EP2139999A1 - Method for preparing a substrate for immobilising a cell, said substrate and uses thereof - Google Patents
Method for preparing a substrate for immobilising a cell, said substrate and uses thereofInfo
- Publication number
- EP2139999A1 EP2139999A1 EP08736151A EP08736151A EP2139999A1 EP 2139999 A1 EP2139999 A1 EP 2139999A1 EP 08736151 A EP08736151 A EP 08736151A EP 08736151 A EP08736151 A EP 08736151A EP 2139999 A1 EP2139999 A1 EP 2139999A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- cell
- solid support
- compound
- peptide
- fusogenic
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn
Links
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- MCYTYTUNNNZWOK-LCLOTLQISA-N penetratin Chemical compound C([C@H](NC(=O)[C@H](CC=1C2=CC=CC=C2NC=1)NC(=O)[C@H]([C@@H](C)CC)NC(=O)[C@H](CCCCN)NC(=O)[C@@H](NC(=O)[C@H](CCC(N)=O)NC(=O)[C@@H](N)CCCNC(N)=N)[C@@H](C)CC)C(=O)N[C@@H](CCC(N)=O)C(=O)N[C@@H](CC(N)=O)C(=O)N[C@@H](CCCNC(N)=N)C(=O)N[C@@H](CCCNC(N)=N)C(=O)N[C@@H](CCSC)C(=O)N[C@@H](CCCCN)C(=O)N[C@@H](CC=1C2=CC=CC=C2NC=1)C(=O)N[C@@H](CCCCN)C(=O)N[C@@H](CCCCN)C(N)=O)C1=CC=CC=C1 MCYTYTUNNNZWOK-LCLOTLQISA-N 0.000 description 1
- 230000001175 peptic effect Effects 0.000 description 1
- 239000000816 peptidomimetic Substances 0.000 description 1
- 238000011197 physicochemical method Methods 0.000 description 1
- 239000003880 polar aprotic solvent Substances 0.000 description 1
- 229920001195 polyisoprene Polymers 0.000 description 1
- 229920000656 polylysine Polymers 0.000 description 1
- 229920002223 polystyrene Polymers 0.000 description 1
- 229910052700 potassium Inorganic materials 0.000 description 1
- 239000011591 potassium Substances 0.000 description 1
- 239000000843 powder Substances 0.000 description 1
- 239000002244 precipitate Substances 0.000 description 1
- 230000005180 public health Effects 0.000 description 1
- 238000011002 quantification Methods 0.000 description 1
- 230000005855 radiation Effects 0.000 description 1
- 238000010992 reflux Methods 0.000 description 1
- 230000001105 regulatory effect Effects 0.000 description 1
- 230000008521 reorganization Effects 0.000 description 1
- 230000000717 retained effect Effects 0.000 description 1
- 239000012047 saturated solution Substances 0.000 description 1
- 238000001878 scanning electron micrograph Methods 0.000 description 1
- 238000004621 scanning probe microscopy Methods 0.000 description 1
- 238000012216 screening Methods 0.000 description 1
- 210000002966 serum Anatomy 0.000 description 1
- 229910052709 silver Inorganic materials 0.000 description 1
- 239000004332 silver Substances 0.000 description 1
- 238000004088 simulation Methods 0.000 description 1
- 239000012312 sodium hydride Substances 0.000 description 1
- 229910000104 sodium hydride Inorganic materials 0.000 description 1
- 238000010532 solid phase synthesis reaction Methods 0.000 description 1
- 238000007614 solvation Methods 0.000 description 1
- 230000000392 somatic effect Effects 0.000 description 1
- 108010004034 stable plasma protein solution Proteins 0.000 description 1
- 238000010561 standard procedure Methods 0.000 description 1
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- 230000009897 systematic effect Effects 0.000 description 1
- 230000001225 therapeutic effect Effects 0.000 description 1
- YSMODUONRAFBET-WHFBIAKZSA-N threo-5-hydroxy-L-lysine Chemical compound NC[C@@H](O)CC[C@H](N)C(O)=O YSMODUONRAFBET-WHFBIAKZSA-N 0.000 description 1
- FGMPLJWBKKVCDB-UHFFFAOYSA-N trans-L-hydroxy-proline Natural products ON1CCCC1C(O)=O FGMPLJWBKKVCDB-UHFFFAOYSA-N 0.000 description 1
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- 241001529453 unidentified herpesvirus Species 0.000 description 1
- 238000012795 verification Methods 0.000 description 1
- 229910052725 zinc Inorganic materials 0.000 description 1
- 239000011701 zinc Substances 0.000 description 1
Classifications
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12N—MICROORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING, OR MAINTAINING MICROORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
- C12N11/00—Carrier-bound or immobilised enzymes; Carrier-bound or immobilised microbial cells; Preparation thereof
- C12N11/14—Enzymes or microbial cells immobilised on or in an inorganic carrier
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12N—MICROORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING, OR MAINTAINING MICROORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
- C12N11/00—Carrier-bound or immobilised enzymes; Carrier-bound or immobilised microbial cells; Preparation thereof
- C12N11/02—Enzymes or microbial cells immobilised on or in an organic carrier
- C12N11/08—Enzymes or microbial cells immobilised on or in an organic carrier the carrier being a synthetic polymer
- C12N11/082—Enzymes or microbial cells immobilised on or in an organic carrier the carrier being a synthetic polymer obtained by reactions only involving carbon-to-carbon unsaturated bonds
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12N—MICROORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING, OR MAINTAINING MICROORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
- C12N11/00—Carrier-bound or immobilised enzymes; Carrier-bound or immobilised microbial cells; Preparation thereof
- C12N11/02—Enzymes or microbial cells immobilised on or in an organic carrier
- C12N11/08—Enzymes or microbial cells immobilised on or in an organic carrier the carrier being a synthetic polymer
- C12N11/089—Enzymes or microbial cells immobilised on or in an organic carrier the carrier being a synthetic polymer obtained otherwise than by reactions only involving carbon-to-carbon unsaturated bonds
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12N—MICROORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING, OR MAINTAINING MICROORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
- C12N11/00—Carrier-bound or immobilised enzymes; Carrier-bound or immobilised microbial cells; Preparation thereof
- C12N11/02—Enzymes or microbial cells immobilised on or in an organic carrier
- C12N11/08—Enzymes or microbial cells immobilised on or in an organic carrier the carrier being a synthetic polymer
- C12N11/089—Enzymes or microbial cells immobilised on or in an organic carrier the carrier being a synthetic polymer obtained otherwise than by reactions only involving carbon-to-carbon unsaturated bonds
- C12N11/096—Polyesters; Polyamides
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N33/00—Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
- G01N33/48—Biological material, e.g. blood, urine; Haemocytometers
- G01N33/50—Chemical analysis of biological material, e.g. blood, urine; Testing involving biospecific ligand binding methods; Immunological testing
- G01N33/53—Immunoassay; Biospecific binding assay; Materials therefor
- G01N33/531—Production of immunochemical test materials
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N33/00—Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
- G01N33/48—Biological material, e.g. blood, urine; Haemocytometers
- G01N33/50—Chemical analysis of biological material, e.g. blood, urine; Testing involving biospecific ligand binding methods; Immunological testing
- G01N33/53—Immunoassay; Biospecific binding assay; Materials therefor
- G01N33/543—Immunoassay; Biospecific binding assay; Materials therefor with an insoluble carrier for immobilising immunochemicals
- G01N33/54353—Immunoassay; Biospecific binding assay; Materials therefor with an insoluble carrier for immobilising immunochemicals with ligand attached to the carrier via a chemical coupling agent
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N33/00—Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
- G01N33/48—Biological material, e.g. blood, urine; Haemocytometers
- G01N33/50—Chemical analysis of biological material, e.g. blood, urine; Testing involving biospecific ligand binding methods; Immunological testing
- G01N33/53—Immunoassay; Biospecific binding assay; Materials therefor
- G01N33/543—Immunoassay; Biospecific binding assay; Materials therefor with an insoluble carrier for immobilising immunochemicals
- G01N33/544—Immunoassay; Biospecific binding assay; Materials therefor with an insoluble carrier for immobilising immunochemicals the carrier being organic
- G01N33/545—Synthetic resin
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N33/00—Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
- G01N33/48—Biological material, e.g. blood, urine; Haemocytometers
- G01N33/50—Chemical analysis of biological material, e.g. blood, urine; Testing involving biospecific ligand binding methods; Immunological testing
- G01N33/53—Immunoassay; Biospecific binding assay; Materials therefor
- G01N33/543—Immunoassay; Biospecific binding assay; Materials therefor with an insoluble carrier for immobilising immunochemicals
- G01N33/551—Immunoassay; Biospecific binding assay; Materials therefor with an insoluble carrier for immobilising immunochemicals the carrier being inorganic
- G01N33/552—Glass or silica
Definitions
- the present invention relates to biochemistry, medicine, biology, and in particular analytical biochemistry and immunoassay. More particularly, the present invention relates to the design of an analysis and diagnostic instrument (analysis chip or biosensor) making it possible to examine samples of different types and in particular biological samples.
- This analysis chip comprises a support, optionally functionalized with an organic matrix, a penetration agent such as a fusogenic compound capable of being inserted into the cell membranes and optionally a cell or part of a cell.
- the present invention relates to the method of manufacture and the use of such a support for biomedical diagnosis and / or for health surveillance.
- the present invention makes it possible to solve the technical problems cited above in the example of irregular antibodies but which can be declinable in many other cases by proposing a tool which is more precisely defined as an analytical system (bioreceptor) composed of an associated biological element. to a solid support and a measurement chain
- the molecular recognition properties of the biological element confer high selectivity and affinity to the biomolecule / target analyte interaction.
- the latter generates a signal that can be translated by different physico-chemical methods into a quantitatively and / or qualitatively correlatable measurement to the target analyte, which may be a biomolecular or cellular system.
- the present invention proposes the use of a supramolecular inclusion system that can penetrate the membranes and this, to immobilize cellular elements. This represents an intermediate technique between simple adsorption and covalent coupling that has not been achieved until now.
- the present invention allows easy, direct and rapid visualization of the binding or non-binding interaction between two biomolecules with high reliability, and the best possible sensitivity.
- the possibility of miniaturization and automation makes it possible to compile multiple tests in a single analysis.
- the present invention is remarkable in that it is not only useful for looking for irregular antibodies during blood transfusions but that it finds uses in any biological, medical, agri-food and other fields, likely to a cell chip.
- the present invention firstly relates to a method for preparing a solid support capable of immobilizing at least one cell and / or at least one cell part, said method comprising a step of attaching to said solid support a fusogenic compound capable of insert into cell membranes.
- fusogenic compound in the context of the present invention any compound that can anchor in a phospholipid membrane such as a cell membrane and lead to the immobilization of said membrane and therefore to that of a cell.
- the fusogenic compound may be chosen from the compounds non-peptide fusogenic and peptic fusogenic compounds.
- non-peptide fusogenic compound any molecule containing neither amino acid nor amino acid analogue and capable of anchoring in a phospholipid membrane such as a cell membrane and lead to the immobilization of said membrane.
- the glycosyl phosphatidylinositol (GPI) unit or the polyisoprene units such as the farnesyl unit (isoprene unit with 15 carbon atoms) or the geranylgeranyl unit (20 carbon isoprene unit), are especially known.
- Alkaline phosphatase has, at its C-terminus, such a well-defined anchoring structure (Ronzon, 2001, University Claude Bernard-Lyon Thesis).
- Isoprenylation is a post-translational modification that adds a farnesyl or geranylgeranyl moiety to a protein having a particular C-terminal pattern (Maurer-Stroh and Eisenhaber, 2005, Genome Biology, Vol 6, R55).
- peptide compound in the context of the present invention any molecule consisting of amino acids or amino acid analogues such as peptides, glycopeptides, lipopeptides, pseudopeptides or peptidomimetics. These fusogenic peptide compounds may be linear or branched, comprising between 5 and 50 amino acids, in particular between 7 and 40 amino acids and, in particular, between 10 and 30 amino acids. In the peptide sequences of the present invention, the amino acids are represented by their one-letter code but they can also be represented by their three-letter code according to the following nomenclature:
- the fusogenic peptide compound used is a basic peptide derived from viral proteins, transcription factors or toxins.
- Penetratin Several basic peptides derived from viral proteins, transcription factors and toxins possess the ability to cross membranes without altering them (Thoren et al., 2000, FEBS Lett., Vol.482, pages 465-8). This led to the development of the first basic 16 amino acid vector called Penetratin
- the fusogenic peptide compound used is a peptide whose amino acid composition is rich in hydrophobic amino acids ie rich in alanine, isoleucine, leucine, methionine, phenylalanine, tryptophan, tyrosine, valine.
- the fusogenic peptide compound comprises at least 40%, especially at least 50% and, in particular, at least 60% of hydrophobic amino acids relative to the total number of amino acids in its sequence.
- Such fusogenic peptides are advantageously peptides derived from signal peptides and, more particularly, from the hydrophobic domain of the latter or peptide fragments of membrane proteins, in particular viruses such as HIV (human immunodeficiency virus), HTLV (human T cell lymphoma virus), MLV (murine leukemia virus) and Herpes virus.
- viruses such as HIV (human immunodeficiency virus), HTLV (human T cell lymphoma virus), MLV (murine leukemia virus) and Herpes virus.
- fusogenic peptide derivative is intended peptides which have 60%, 65%, 70%, 75%, 80%, 85%, 90% and / or 95% identity with the sequences of the preferred fusogenic peptides given above.
- the fusogenic peptide derivatives may also have, relative to the fusogenic peptide sequences given above, at least one additional C-terminal and / or N-terminal amino acid, a post-translational modification and / or a chemical modification, in particular glycosylation, amidation, acylation, acetylation, methylation, as well as peptides which carry a protective group which makes it possible to prevent their degradation.
- the fusogenic peptide derivatives may also be those in which one or more amino acids are selected from the group consisting of enantiomers, diastereoisomers, natural D-conforming amino acids, beta amino acids, alpha-substituted amino acids, amino acids hydroxyproline, hydroxylysine, allohydroxylysine, 6-N-methyllysine, N-ethylglycine, N-methylglycine, N-ethylasparagine, allo-isoleucine, N-methylisoleucine, N-methylvaline, pyroglutamine, aminobutyric acid and synthetic amino acids including ornithine, norleucine, norvaline, cyclohexyl-alanine and omega-amino acids.
- the derivatives of the fusogenic peptides cover, according to the invention, also the retropeptides and the retroinversopeptides, as well as the peptides whose side chain of one or more amino acids is substituted by groups which do not modify the fusogenic activity of said fusogenic peptides.
- the fragments of the preferred fusogenic peptides advantageously have more than 5 amino acids, especially more than 10 amino acids or more than 15 amino acids.
- the fusogenic peptides, their derivatives and their fragments may be natural products, recombinant products obtained according to techniques of molecular biology and genetic engineering well known to those skilled in the art or be synthesized chemically according to techniques such as phase synthesis solid or liquid also well known to those skilled in the art.
- the solid support on which the fusogenic compound is attached is in particular an inorganic solid support.
- the solid support according to the present invention is chosen from the group consisting of glasses, quartz, silicas, ceramics (for example of oxide type), metals (for example, aluminum, chromium, copper, zinc, silver, nickel, tin or gold) and semiconductors (eg silicon, germanium, ITO).
- the solid support or the surface of said solid support is made of an organic material such as a polymer or a resin including nylon, polyethylene glycol, polycarbonates, polyfluoropolymers or composites.
- Said solid support can be in various forms of variable size. By way of examples and non-exhaustively, it may be in the form of slides, chips, particles, beads or microchannels capillary type. These different types of support can have sizes ranging from a few hundred micrometers to several centimeters.
- the solid support has a surface bearing functional groups (hereinafter referred to as "functionalized surface").
- these functional groups are chosen from hydroxyl groups, radical entities, alcohol, amine or thiol functions.
- This functionalization can be intrinsic to the nature of the surface material of the solid support used. Alternatively, this functionalization can be obtained by cleaning said surface by means of at least one solvent, detergent, radiation or oxygen plasma or any other method allowing the formation of functional groups as defined above.
- the fusogenic compound may be directly bonded to the functionalized solid support or not.
- the bond between the fusogenic compound and the functionalized or non-functionalized solid support is indirect and carried out through a coupling agent.
- a functionalized solid support is advantageously chosen.
- at least one joining agent is grafted beforehand to the surface of said solid support. This (or these) agent (s) joining then ensue the attachment of fusogenic compounds on the solid support and in particular on solid supports whose surface is inorganic.
- Those skilled in the art know different usable bonding agents.
- this form of implementation corresponds to the case of a support covered with a thin layer of a polyethylene glycol polyethylene glycol siloxane polymer or polylysine (D or L) for fixing the fusogenic compound.
- polymer is meant a repetition of a number of monomeric units advantageously between 2 and 30.
- the indirect fixation of the fusogenic compound on the solid support is carried out by means of an organized self-assembled monolayer of one or more organic or organometallic compounds (Si, Sn, Ge) having a chain alkyl terminated with a functional group.
- These functional groups are, for example, a hydroxyl, an amino, a carboxyl, a halogen or a thiol and their modified forms, especially activated or protected forms.
- the organized self-assembled monolayer comprises one or more organosilicon compounds corresponding to the following formula I:
- n is between 3 and 40
- - Xi, X2, X3 which may be identical or different from each other are selected from the group consisting of linear or branched, saturated C 1 to C 6 alkyl groups, and hydrolysable groups, at least one of X 1, X 2 and X 3 representing a hydrolysable group,
- A represents the group -O- (CH 2 CH 2 O) k - (CH 2 ) x - in which k is between 1 and 100, and i is an integer greater than or equal to 0;
- B represents a group -Ri, -CORi, -COORi, -CONRiR 2 ,
- B represents a group -ORi, -OCORi, -NR x R 2 , -COORi, -CONRiR 2 , -SRi or a halogen atom.
- R 1 and R 2 may be identical or different, representing a hydrogen atom, an optionally substituted, saturated or unsaturated and linear or branched hydrocarbon-based chain comprising 1 to 24 carbon atoms or an aromatic group.
- B can represent any group resulting from the protection of a hydroxyl or carboxylic acid function such as the protective groups described in Protective groups in organic System (TW GREENE et al., 2 ed, Wiley Interscience), for example a cyclic protecting group.
- i is between 0 and 100, in particular between 0 and 50, in particular between 0 and 10 and, more particularly, i is 0 or 1.
- hydrolyzable means any group capable of reacting with an acid in an aqueous medium so as to give the compounds XiH, X 2 H or X 3 H, X 1 , X 2 , X 3 being as defined in formula I.
- said hydrolysable group is selected from the group consisting of halogen atoms, the group -N (CH 3 ) 2 and the groups -OR ', R' being a linear or branched C 1 -C 6 saturated alkyl group.
- halogen means fluorine as well as chlorine, bromine or iodine.
- organosilicon compound (s) of formula I have an ethylene glycol to be used in the context of the present invention.
- An organized self-assembled monolayer formed on a solid support makes it possible to obtain a dense, homogeneous organic surface and well defined parameters both chemically and structurally.
- the formation of this monolayer obtained by virtue of the self-assembling properties of the compounds of formula I for well defined values of n, m, k, and i, is perfectly reproducible for one or each organosilicon compound or for mixtures of several compounds as well. in terms of quantity in terms of surface distribution of the support.
- This functionalization is stable in time and the grafted molecules have a good orientation vis-à-vis the biological molecules.
- These organosilicon distribution parameters on the solid support are determined and monitored by different optical methods such as vibrational imaging, atomic force microscopy, ellipsometry, etc.
- organosilicon compounds of formula I used in the present invention advantageously have very varied functionalities and a high reactivity, having regard to the nature of the group A and the diversity of the terminal B groups which can be used, these groups B being of course able to be modified and functionalized to will according to organic chemistry reactions well known to those skilled in the art.
- the bonds involved between the peptide compound, the solid support and / or the joining agent are chosen from covalent, ionic or electrostatic bonds or any strong chemical interaction without degradation. siloxane bonds developed between the organosilicon compounds and the solid support.
- the process for preparing a solid support capable of immobilizing at least one cell or at least one cell part advantageously comprises the following steps: a) the preparation of a solid support such as above defined, modified by a self-assembled monolayer comprising at least one organosilicon compound corresponding to formula I as defined above, said organosilicon compound having at its end a halogen, a hydroxyl function, acid or amine, protected or not, activated or not, b) optionally, the deprotection of the terminal function of said organosilicon compound used in step (a), c) optionally, in the case where the modified solid support carries terminal carboxylic acid functions, the activation of these functions, d) optionally, the deprotection of the side chains and of the terminal amine of the fusogenic peptide compound as defined above, e) optionally, in the case where the modified solid support bears terminal hydroxy or amino functions, the activation of the terminal carboxylic acid function of the fusogenic peptid
- the treatment step (b) may for example be a basic treatment and possibly ultrasound in order to eliminate the organosilicon compounds only adsorbed on the surface.
- the steps (c) and (e) of activation of the carboxylic acid functions may, for example, be carried out using a solution of N-hydroxysuccinimide or of carbodiimide, or else any other suitable activating reagent known in the art. skilled person.
- Step (f) is carried out under temperature conditions of 0 to 70 ° C. and in a satisfactory pressure range.
- step (f) it is understood that, to solubilize the peptide compounds, any solution allowing a good solubility of the latter and a control of the evaporation of the solution will be used.
- the fixation of the peptide compounds during step (f) may be followed by different optical or spectroscopic methods (vibrational, visible UV), infrared or Raman imaging, atomic force microscopy, ellipsometry, etc.
- the fusogenic peptide compounds that can be used in steps (d), (e) or (f) can be used alone or as a mixture.
- step (g) of washing in particular in an osmosis water bath, the support on which the peptide compounds are grafted can be subjected to ultrasound and this, to eliminate, without weakening the grafted layer, the peptide compounds only adsorbed on the support.
- the present invention also relates to a method for immobilizing at least one cell and / or to least one cell part.
- This process comprises the following steps: a ') the preparation of a support according to a process as defined above, b') the preparation of a cell suspension containing at least one cell or at least one cell part, c ') contacting the solid support as prepared in step (a ') by immersion for an indefinite period in the cell suspension prepared in step (b'), d ') at least one wash of the support obtained in the step (c ') on which said cell or said cell part is immobilized.
- step (b ') The preparation of a cell suspension in step (b ') is advantageously carried out by diluting the cells or parts of cells in a buffer capable of preserving the integrity of the cells and cell membranes. Prior to this step (b '), the cells may be subjected to different treatments such as centrifugation, washing or concentration. These cells and cell parts as cell membranes are as described below. Step (c ') is advantageously carried out under conditions of temperature ranging from 0 to 50 ° C. and of suitable pressure.
- the cell may be a yeast such as a yeast of the genus Saccharomyces or Candida, a mammalian cell, a plant cell or an insect cell.
- Mammalian cells can be, for example, tumor cells, normal somatic line cells or stem cells. It may be non-exclusively red blood cells, osteoblasts, neuronal cells, hepatocytes, muscle cells, lymphocytes or progenitor cells.
- Prokaryotic cells are bacteria that can be gram + OR -.
- bacteria belonging to the branches of spirochetes and chlamydiae mention may be made, by way of examples and in a non-exhaustive manner, of the bacteria belonging to the branches of spirochetes and chlamydiae, the bacteria belonging to the families of Enterobacteriaceae (such as Escherichia coli), Streptococcaceae (such as streptococcus), microbacteria (such as staphylococcus), legionellae, mycobacteria, bacillaceae and others.
- Enterobacteriaceae such as Escherichia coli
- Streptococcaceae such as streptococcus
- microbacteria such as staphylococcus
- legionellae mycobacteria
- mycobacteria bacillaceae and others.
- the cells used in the context of the present invention may be obtained from a primary cell culture or from a cell line culture or from a sample of a fluid such as water. or a biological fluid previously extracted from a human or animal body, said sample may have undergone various prior treatments such as centrifugation, concentration, dilution ....
- part of cell is meant in the context of this particular invention the whole or a portion of the cell membrane in which the fusogenic compound and in particular the fusogenic peptide, its derivatives or fragments as defined above are anchored.
- cell membrane is intended to mean both the phospholipid-rich plasma membrane of eukaryotic cells (also called the cytoplasmic membrane, plasma membrane or plasma membrane) and the plasma membrane and the carbohydrate cell wall (containing peptidoglycan). ) bacteria or plant cells.
- the cell parts used in the context of the present invention may be obtained from cells derived from a cell culture or from a sample of a fluid as previously defined.
- Those skilled in the art know various techniques for obtaining, from cells or cell cultures, cell membranes, parts of cell membranes, fractions rich in cell membranes such as the phase-sharing technique.
- the present invention also relates to a solid support capable of being prepared by the preparation method according to the invention and / or capable of being obtained after immobilization of a cell and / or part of cell on the latter.
- the present invention also relates to a diagnostic kit containing at least one solid support according to the invention.
- the present invention relates to a solid support such as than previously defined on which is fixed a fusogenic compound capable of being inserted into the cell membranes, said compound being optionally anchored in at least one cell and / or at least one cell part as previously described.
- the support according to this first form of implementation is remarkable in that it can be stored before any use. It can especially be frozen, dried or freeze-dried. Those skilled in the art know different preservation techniques that do not affect the protein structure of the fusogenic compound attached to said support.
- the present invention relates to a solid support as defined above on which is fixed a fusogenic compound capable of being inserted into the cell membranes, said compound being anchored in at least one cell and / or minus a cell part as previously described.
- a fusogenic compound capable of being inserted into the cell membranes, said compound being anchored in at least one cell and / or minus a cell part as previously described.
- the support object of the present invention described allows rapid immobilization, simple, reproducible, aspecific, homogeneous, given cellular elements and can be used for the detection of cells coming to rest with the fusogenic compounds decorating the solid support (first form of implementation above), of antibodies or ligands respectively specific for antigens or receptors present on the cells or parts of cells immobilized on the solid support (second embodiment above), of compounds with potential therapeutic activity by testing them on cells or parts of cells immobilized on the solid support, for example, cancer cells (second embodiment above).
- the present invention finds a particularly interesting application in the field of biomedical diagnosis or sanitary monitoring of biological fluids or intended for human or animal use.
- the present invention relates to the use, for the immobilization of biomolecular or cellular elements, of a solid support optionally modified by an organized monolayer of one or more organometallic compounds such as, for example, organosilicon compounds and methods of analysis by optical or spectroscopic methods of these biological elements. Therefore, the present invention relates to the use of a solid support as previously defined in the context of a health watch. Indeed, the various fusogenic compounds that can be used fit into the cell membrane in a non-specific manner. It is therefore possible to use the support having the compound fusogen as part of a health watch to verify the presence or absence of contaminating cells of the bacteria type in a fluid. The present invention allows to focus the target to make it detectable. This health watch can include the control of the microbiological quality of the water or an industrial microbiological control.
- the present invention relates to the use of a solid support as defined above and / or a method for immobilizing at least one cell and / or part of a cell on a solid support in the search for antibodies and / or ligands respectively specific for antigens or receptors present on the surface of the cells or cell parts attached to said support.
- This form of implementation is particularly interesting in the case of the search for autoantibodies when there is suspicion of autoimmune disease such as Hashimoto's disease or in the case of the search for irregular antibodies acquired secondarily. especially for blood transfusion.
- two variants can be envisaged:
- the detection of an antibody on the cell or part of the cell can be carried out by different optical or spectroscopic methods (vibrational, visible UV), Infra-Red or Raman imaging, atomic force microscopy, ellipsometry ...
- a simple infra-red transmission assembly calibrated in the characteristic frequency domain of the amide groups will make it possible to rapidly obtain the percentage of fixed biomolecules in comparison with unexposed or unrecognized samples. It is also possible via Infra-Red microscopy to perform imaging mapping of the support thus treated. It is therefore possible to make a chip by nanotechnology and thus obtain a multitude of detections to target a very large number of samples.
- FIG. 1 is a schematic representation of the solid phase synthesis of peptides 1 and 2. The deprotection and coupling steps are repeated for each amino acid to be incorporated. The duration of a cycle is 2 to 3 hours.
- Figure 2 shows the ratio between the infrared spectrum of glass materials grafted by two joining agents (compounds or organic arms C and D) before and after treatment with potassium after subtraction of the spectrum of the raw glass.
- Figure 3 is a schematic representation of the indirect binding of a peptide on a solid support via a joining arm.
- FIG. 4 shows the ratio between the infrared spectrum of glass materials grafted by the joining agents C and D and then by the peptide 1 after subtraction of the spectrum of the raw glass.
- Figure 5 shows the ratio between the Infra-Red spectrum of the different materials (glass + compounds C and D (arm), glass + arm + peptide 1, glass + peptide 1) whether or not treated with ultrasound after subtraction of the spectrum of the raw glass.
- FIG. 6 shows the ratio between the infrared spectrum of glass materials grafted by the linking agents C and D and then by the peptide 2 after subtraction of the spectrum of the raw glass.
- FIG. 7 presents photonic microscopy images of different glass supports brought into contact with a cell suspension and then rinsed.
- the snapshots of FIGS. 7A and 7B respectively correspond to:
- FIG. 8 is a schematic representation of the bioreceptor as visualized on the plate of FIG. 7B on which antibodies specific for membrane antigens of erythrocytes are fixed.
- Figure 9 shows the scanning electron micrographs of various oxidized silicon supports brought into contact with a cell suspension and rinsed.
- the snapshots of FIGS. 9A to 9D respectively correspond to:
- peptide 2 Two peptides synthesized in the laboratory were used: the fusogenic peptide 519-541 corresponding to the NH 2 end of the HIV virus Gp41 protein (peptide 2) whose sequence is as follows: AVGIGALFLGFLGAAGSTMGARS (SEQ ID NO: 1 in the list of sequences in the appendix), the synthetic peptide, derived from the HTLV-1 virus protein Gp46 (peptide 1) whose sequence (sequence 242-261) is the following: SPNVSVPSSSSTPLLYPSLA (SEQ ID NO: 7 in FIG. list of sequences in annex).
- Peptide 1 is particularly interesting. Indeed, there is an antibody specifically directed against this peptide 1 (called DB4), which makes it possible to evaluate the preservation of its functionality after grafting.
- Solid phase peptide synthesis (S.P.S.) according to the Fmoc strategy was used to synthesize these two peptides.
- the synthesis is carried out recurrently from the first amino acid, anchored on the solid support by its function carboxylic acid (step 1, Figure 1).
- the 9-fluorenylmethoxycarbonyl group Fmoc (baso-labile) is used for the temporary protection of the ⁇ -amino function.
- the release of this function is the next step in the synthesis (step 2).
- the second amino acid whose ⁇ -carboxylic function has been activated beforehand, is coupled with the free ⁇ -amino group of the immobilized amino acid on the resin.
- Step 3 Steps 2 and 3 are repeated for each residue to be incorporated.
- the syntheses were carried out under the standard conditions of the Fmoc protocol using an automatic synthesizer and by starting the reaction chain with an amino acid grafted onto a Wang-type resin.
- the coupling reactions were carried out in N-methylpyrrolidone (NMP), polar aprotic solvent which allows maximum solvation of the peptide-resin complex.
- NMP N-methylpyrrolidone
- This resin has a presubstitution rate of approximately 0.5-0.75 ⁇ mol ⁇ g -1, it consists of polystyrene beads crosslinked with 1% of divinylbenzene and functionalized with p-benzyloxybenzyl alcohol (arm) which allows binding to the first amino acid.
- the solid support chosen is an inorganic glass substrate which has been subjected to a treatment which makes it possible to obtain a clean and reactive surface. Indeed, it is necessary to carry out an effective cleaning before any grafting, cleaning which must not however alter the nature of the surface.
- an alkaline detergent "Hellmanex II” was used to optimize cleaning.
- the surface condition of the material is observed in medium Infra-Red by transmission after immersion for 15 minutes at 50 ° C in an aqueous solution of Hellmanex 2%.
- the material is then rinsed with osmosis water and then treated with jets of osmosis water is applied systematically.
- the analysis of the plates after this cleaning made it possible to note the disappearance of the characteristic bands of the organic pollution
- the reaction frequently used to obtain a long carbon chain is the coupling of two chains via two sp 3 carbons.
- the heterocoupling reactions are carried out between a Grignard reagent and a halide using a copper catalyst, for example LiCuCl 4 or copper iodide I.
- the docos-21-en-1-ol is of formula:
- Second step Formation of lithium alkoxide
- a solution of anhydrous THF is added 5.4 g (21.4 mmol) of 10-bromo-undecanol.
- the solution is placed at -78.degree. C. under an inert atmosphere, then with an equi-pressure ampoule, 0.71 ml (23.45 mmol) of methyl lithium is added and the reaction is then allowed to gradually return to ambient temperature .
- Step 3 Formation of docos-21-en-ol
- 0.21 g (1.1 mmol) of copper iodide is added to the solution containing 11-bromomagnesium-1-undecene cooled to -78 ° C.
- the solution containing the lithian derivative is added dropwise through a cannula.
- the mixture is stirred for one hour at this temperature, then 15 hours at room temperature.
- the reaction is stopped by the addition of 40 ml of absolute ethanol; a black precipitate is formed. The latter is accentuated by the addition of 3 ml of 10% HCl.
- After filtration on frit 1, the clear solution obtained is extracted three times with diethyl ether.
- docos-21-enyl acetate The OH end of docos-21-en-1-ol is then acetylated with acetic anhydride in dichloromethane to yield docos-21-enyl acetate of formula:
- organic compound A docos-21-enyl acetate
- organic compound B hereinafter designated organic compound B of formula:
- organic compound A 200 mg (0.5 mmol) is placed in a Schenck tube having been previously purged by alternating switching between a vacuum ramp and an argon ramp. After addition of 2 ml of freshly distilled toluene, the solution is stirred under argon until complete dissolution of the solid. Then 300 ⁇ l of freshly distilled trichlorosilane are added as well as 2 drops of Krsted catalyst. The solution turned pale yellow is stirred for 2 hours at 40 ° C. After evaporation under reduced pressure, a crude solid is obtained and is then used in the state in the grafting step. This solid corresponds to 22- (trichlorosilanyl) -docosyl acetate hereinafter referred to as organic compound C of formula:
- the grafting was carried out by mixing the two types of compounds and using an equimolar mixture in order to obtain a surface having an average density of active sites vis- with respect to the peptide.
- the glass materials are introduced into a reactor.
- This enclosure makes it possible to dry the material at a controlled temperature while avoiding any organic contamination after the cleaning; this is frequently encountered during drying in an oven.
- This type of jacketed reactor will also be used to carry out the silanization step which must take place under an inert atmosphere and at a fixed temperature. This is possible using an external cooling system with thermal controller.
- the materials are removed from the chamber and immersed in an osmosis water bath subjected to ultrasound over a period of five minutes.
- This type of treatment makes it possible to eliminate the organosilicon compounds only adsorbed on the support without weakening the grafted layer.
- the next step is the deprotection of the OH function by saponification of the compounds C and D mounted on support using 0.5M alcoholic potassium hydroxide.
- the materials are immersed in this KOH solution for 20 minutes.
- the supports are then removed and the impurities are removed by 3 successive treatments of 3 minutes by ultrasound in an osmosis water bath.
- the materials are then dried on adsorbent paper.
- Scheme 2 below corresponds to the deprotection reaction of the ester function after grafting of compound C.
- the grafted layer is sufficiently compact and dense to prevent the penetration of the alcoholic potash within the layer.
- the glass support was thus functionalized by the two types of compounds C and D so as to obtain a functional surface with a low density of active sites.
- Each functionalized support is placed in a pillbox with a wide neck, in which the grafting takes place.
- a micro bar magnet is added to ensure agitation.
- These pill containers are themselves placed in the reactor which is then closed and then purged by alternating switching between a vacuum ramp and an argon ramp. The supports are therefore in an inert atmosphere. 8 ml of grafting solvent are added to each pill in the reactor and stirring is started.
- activation solution comprising, per unit of support, 2 mmol of HOBt and 2 mmol of [3- (N-ethylcarbodiimide) -N-propyl] triethylammonium iodide (DiPC) dissolved in solution, under an inert atmosphere, in 1 ml of grafting solvent (osmosis water at 9 g / l NaCl).
- grafting solvent osmosis water at 9 g / l NaCl
- the peptide 2 synthesized according to the method described above was fixed using the same protocol as that for peptide 1. Only the osmosis water with 9 g / l NaCl present in the grafting and activation solvents was replaced by hexafluoropropan-2-ol which makes it possible to solubilize the hydrophobic peptides.
- the glass supports thus obtained are analyzed by Infra-Red in specular reflection mode by the P.M. method. I .R. R. A. S. ( Figure 6).
- the characteristic bands of the amides I and II confirm that the peptide 2 has been grafted according to the protocol described on a glass support.
- ELISA tests were carried out in order to verify the biological properties and in particular the accessibility of the epitope and the specific recognition of antibodies for the fixed peptides. These tests were carried out in particular for the peptide 1 specifically recognized by the antibody DB4, using as negative control an antibody called
- BF6 directed against a human complement system protein and not recognizing peptide 1.
- the fusogenic peptide 2 was able to immobilize the red blood cells on the glass support.
- red blood cells were not damaged and retained normal biconcave disk forms.
- results quite similar to those previously presented were obtained using an oxidized silicon support instead of a glass support. Indeed, identical experiments to those previously described for the glass were carried out on oxidized silicon supports and the results obtained by scanning microscopy are presented in FIG. 9. No red blood cells are present on the plates without fusogenic peptide 2. ie no aspecific adsorption of these cells on silicon (FIG. 9A), coupling agents C and D
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Abstract
Description
PROCEDE DE PREPARATION D'UN SUPPORT POUR PROCESS FOR PREPARING A SUPPORT FOR
L'IMMOBILISATION D'UNE CELLULE, LEDIT SUPPORT ET SES UTILISATIONSIMMOBILIZATION OF A CELL, THIS SUPPORT AND ITS USES
DESCRIPTIONDESCRIPTION
DOMAINE TECHNIQUETECHNICAL AREA
La présente invention relève de la biochimie, de la médecine, de la biologie, et en particulier de la biochimie analytique et du dosage immunologique . Plus particulièrement, la présente invention concerne la conception d'un instrument d' analyse et de diagnostic (puce d' analyse ou biocapteur) permettant d'examiner des échantillons de différente nature et notamment des échantillons biologiques. Cette puce d'analyse comprend un support, éventuellement fonctionnalisé par une matrice organique, un agent de pénétration tel qu'un composé fusogène capable de s'insérer dans les membranes cellulaires et éventuellement une cellule ou partie de cellule. La présente invention concerne le procédé de fabrication et l'utilisation d'un tel support pour un diagnostic biomédical et/ou pour une surveillance sanitaire .The present invention relates to biochemistry, medicine, biology, and in particular analytical biochemistry and immunoassay. More particularly, the present invention relates to the design of an analysis and diagnostic instrument (analysis chip or biosensor) making it possible to examine samples of different types and in particular biological samples. This analysis chip comprises a support, optionally functionalized with an organic matrix, a penetration agent such as a fusogenic compound capable of being inserted into the cell membranes and optionally a cell or part of a cell. The present invention relates to the method of manufacture and the use of such a support for biomedical diagnosis and / or for health surveillance.
ÉTAT DE LA TECHNIQUE ANTÉRIEURE Lors d'échanges sanguins transfusionnels, un conflit peut survenir entre le produit du donneur et l'organisme receveur. La sécurité transfusionnelle doit assurer la compatibilité immunologique immédiate mais aussi prévenir l'incompatibilité de futures transfusions ; ceci est primordial d'un point de vue santé publique. Des transfusions mal contrôlées peuvent provoquer l'apparition d'anticorps dirigés contre les structures de surface des hématies (antigène) et ainsi entraîner une hémolyse qui peut conduire, lors d'une réaction immunitaire grave, au décès du patient. De même, il est fondamental de prévenir ou de surveiller toute immunisation non désirée. Ceci s'applique tout particulièrement aux immunisations fœto-maternelles . En effet, à la suite d'un premier accouchement une femme ne possédant pas l'antigène Rhésus D (phénotype RH D-) sur ses érythrocytes peut développer des anticorps dirigés contre cet antigène présent à la surface des hématies de son premier enfant (phénotype RH D+) . Cette réaction immunologique se produit lors du contact entre le sang de la mère et celui de l'enfant lors de l'accouchement. Dans le cas d'une seconde grossesse (si le second enfant possède lui aussi l'antigène Rhésus D (RH D+) ) un conflit immunologique grave pour la mère et le fœtus peut se produire entraînant parfois la mort du fœtus ou des problèmes chez le nouveau-né (cyanose : troubles d'oxygénation). Ainsi le test consistant à rechercher des anticorps irréguliers acquis secondairement (transfusion, grossesse, greffe) par un individu a une importance considérable. Ainsi, pour assurer le bon déroulement d'une transfusion sanguine, une recherche d'anticorps irréguliers (R.A.I.) systématique est réalisée en complément d'un phénotypage précis.STATE OF THE PRIOR ART During blood transfusion exchanges, a conflict may arise between the donor product and the recipient organism. Transfusion safety must ensure immediate immunological compatibility but also prevent the incompatibility of future transfusions; this is essential from a point of view public health. Poorly controlled transfusions can cause antibodies to the surface structures of the red blood cells (antigen) and lead to haemolysis, which can lead to death in a severe immune reaction. Similarly, it is essential to prevent or monitor any unwanted immunization. This applies especially to fetal-maternal immunizations. Indeed, following a first delivery, a woman who does not have the Rhesus D antigen (RH D- phenotype) on her erythrocytes can develop antibodies directed against this antigen present on the surface of the erythrocytes of her first child (phenotype RH D +). This immunological reaction occurs when the mother's blood comes into contact with the child's blood during delivery. In the case of a second pregnancy (if the second child also has Rhesus D antigen (RH D +)) a serious immunological conflict for the mother and the fetus can occur, sometimes resulting in fetal death or problems in the child. newborn (cyanosis: oxygenation disorders). Thus the test of looking for irregular antibodies acquired secondarily (transfusion, pregnancy, transplant) by an individual is of considerable importance. Thus, to ensure the smooth running of a blood transfusion, systematic irregular antibody screening (RAI) is performed in addition to accurate phenotyping.
Ces examens sont pratiqués dans tous les laboratoires d'analyses médicales et dans les centres de transfusion sanguine. Aussi, les examens immuno- hématologiques doivent être rapides et les plus fiables possibles .These exams are practiced in all medical laboratories and blood centers. Also, immunoassays haematological tests must be rapid and as reliable as possible.
Depuis son introduction en 1945, le test de Coombs reposant sur l' hémaglutination (agrégation des globules rouges due à la multifonctionnalité des anticorps) demeure la technique de référence dans la recherche des anticorps irréguliers. Même si la technique en tube a été la première décrite, elle est progressivement remplacée par des techniques moins subjectives, plus sensibles et plus standardisées. Les techniques en gel ont été introduites en 1990 et sont commercialisées aujourd'hui par les sociétés Diamed et Ortho . Des techniques en phase solide, comme capture-R (Immucor), Ready Screen (Biotest) ou Biloba (Scibiex) sont également présentes sur le marché. Actuellement, la technologie en gel domine le marché de l'immuno- hématologie. Elle présente cependant un désavantage majeur en raison des difficultés d'automatisation.Since its introduction in 1945, the Coombs test based on haemagglutination (aggregation of red blood cells due to the multifunctionality of antibodies) remains the standard technique for the detection of irregular antibodies. Although the tube technique was the first described, it is gradually replaced by less subjective techniques, more sensitive and more standardized. Gel techniques were introduced in 1990 and are now marketed by Diamed and Ortho. Solid phase techniques such as Capture-R (Immucor), Ready Screen (Biotest) or Biloba (Scibiex) are also available on the market. Currently, gel technology dominates the immuno-hematology market. However, it presents a major disadvantage because of the difficulties of automation.
En effet, la forte augmentation des transfusions sanguines dans les milieux hospitaliers et l'accroissement considérable du nombre d'analyses de sang dans les laboratoires privés incitent les fabricants à automatiser leurs méthodes d'analyses sanguines . Afin d'améliorer ces systèmes, il serait particulièrement intéressant d'élaborer un nouvel outil immunologique qui présenterait les qualités des tests actuels en apportant un maximum d'améliorations :In fact, the sharp increase in blood transfusions in hospital settings and the considerable increase in the number of blood tests in private laboratories have led manufacturers to automate their methods of blood tests. In order to improve these systems, it would be particularly interesting to develop a new immunological tool that would present the qualities of current tests with maximum improvements:
• visualisation facile, directe et rapide de la liaison antigène-anticorps• easy, direct and rapid visualization of antigen-antibody binding
• une grande fiabilité, • la meilleure sensibilité possible,• high reliability, • the best possible sensitivity,
• une possibilité de miniaturisation et d'automatisation permettant de compiler de multiples tests en une seule analyse, • enfin un coût faible en mesure de concurrencer ses analogues le plus souvent jetables.• a possibility of miniaturization and automation to compile multiple tests in a single analysis, • finally a low cost able to compete with its most often disposable analogues.
L'utilisation de méthodes spectrales pourrait répondre à ces différents points en particulier au niveau de la rapidité, la simplicité et la sensibilité. De plus, la visualisation directe de l'interaction autoriserait une évaluation des constantes d'affinité des anticorps vis-à-vis des antigènes et permettrait ainsi une détermination et une quantification plus précise des immunoglobulines . De nos jours, la plupart de ces impératifs peuvent être surmontés par l'utilisation de technologies visant à immobiliser des biomolécules. Ces dernières permettent alors la détection d' autres analytes cibles. Ces systèmes analytiques, connus sous le nom de biocapteurs, sont très étudiés dans les domaines de l' agroalimentaire, de l'environnement et tout particulièrement celui du biomédical avec les puces à ADN ou sur les puces à protéines, par exemple.The use of spectral methods could respond to these different points especially in terms of speed, simplicity and sensitivity. In addition, direct visualization of the interaction would allow an evaluation of antibody affinity constants for antigens and thus allow for more precise determination and quantification of immunoglobulins. Today, most of these requirements can be overcome by the use of technologies to immobilize biomolecules. The latter then allow the detection of other target analytes. These analytical systems, known as biosensors, are highly studied in the fields of agribusiness, environment and especially biomedical with microarrays or protein chips, for example.
Le problème majeur dans le cas de l'immobilisation de cellules sur un biorécepteur est la conservation de leurs propriétés biologiques. L'utilisation du couplage covalent d'une des biomolécules de surface de la cellule est rarement employée car les techniques de greffage affectent la viabilité cellulaire. Le plus souvent les cellules sont seulement adsorbées en surface du support. Parfois, la croissance cellulaire est réalisée directement sur l'électrode de mesure. Enfin, une technique plus complexe consiste à utiliser un anticorps dirigé contre un élément cellulaire reconnu et à lier cet anticorps au support. Cette technique est d'utilisation spécifique du fait de l'anticorps choisi qui détermine le (ou les) type (s) de cellules immobilisées.The major problem in the case of immobilization of cells on a bioreceptor is the preservation of their biological properties. The use of covalent coupling of one of the surface biomolecules of the cell is rarely used because grafting techniques affect cell viability. Most often the cells are only adsorbed on the surface of the support. Sometimes the Cell growth is performed directly on the measurement electrode. Finally, a more complex technique is to use an antibody directed against a recognized cellular element and to bind this antibody to the support. This technique is of specific use because of the chosen antibody which determines the type (s) of immobilized cells.
EXPOSÉ DE L' INVENTIONSTATEMENT OF THE INVENTION
La présente invention permet de résoudre les problèmes techniques cités ci-dessus dans l'exemple des anticorps irréguliers mais déclinables à de nombreux autres cas en proposant un outil qui se définit plus précisément comme un système analytique (biorécepteur) composé d'un élément biologique associé à un support solide et d'une chaîne de mesureThe present invention makes it possible to solve the technical problems cited above in the example of irregular antibodies but which can be declinable in many other cases by proposing a tool which is more precisely defined as an analytical system (bioreceptor) composed of an associated biological element. to a solid support and a measurement chain
(transducteur) . Les propriétés de reconnaissance moléculaire de l'élément biologique confèrent une grande sélectivité et une grande affinité à l'interaction biomolécules / analyte cible. Cette dernière engendre un signal qui peut être traduit par différentes méthodes physico-chimiques en une mesure corrélable quantitativement et/ou qualitativement à 1' analyte cible, lequel peut être un système biomoléculaire ou cellulaire. Ainsi, la présente invention propose l'utilisation d'un système d'inclusion supramoléculaire pouvant pénétrer les membranes et ce, pour immobiliser des éléments cellulaires. Ceci représente une technique intermédiaire entre la simple adsorption et le couplage covalent non réalisable jusqu'à présent. La présente invention permet une visualisation facile, directe et rapide de l'interaction liante ou non liante entre deux biomolécules avec une grande fiabilité, et la meilleure sensibilité possible. La possibilité de miniaturisation et d'automatisation permet de compiler de multiples tests en une seule analyse.(transducer). The molecular recognition properties of the biological element confer high selectivity and affinity to the biomolecule / target analyte interaction. The latter generates a signal that can be translated by different physico-chemical methods into a quantitatively and / or qualitatively correlatable measurement to the target analyte, which may be a biomolecular or cellular system. Thus, the present invention proposes the use of a supramolecular inclusion system that can penetrate the membranes and this, to immobilize cellular elements. This represents an intermediate technique between simple adsorption and covalent coupling that has not been achieved until now. The present invention allows easy, direct and rapid visualization of the binding or non-binding interaction between two biomolecules with high reliability, and the best possible sensitivity. The possibility of miniaturization and automation makes it possible to compile multiple tests in a single analysis.
De plus, la présente invention est remarquable de par le fait qu'elle est non seulement utile pour rechercher des anticorps irréguliers lors des transfusions sanguines mais qu'elle trouve des utilisations dans tout domaine biologique, médical, agroalimentaire et autre, susceptible de mettre en œuvre une puce à cellules.In addition, the present invention is remarkable in that it is not only useful for looking for irregular antibodies during blood transfusions but that it finds uses in any biological, medical, agri-food and other fields, likely to a cell chip.
La présente invention concerne tout d' abord un procédé pour préparer un support solide susceptible d' immobiliser au moins une cellule et/ou au moins une partie de cellule, ledit procédé comprenant une étape consistant à fixer audit support solide un composé fusogène capable de s'insérer dans les membranes cellulaires .The present invention firstly relates to a method for preparing a solid support capable of immobilizing at least one cell and / or at least one cell part, said method comprising a step of attaching to said solid support a fusogenic compound capable of insert into cell membranes.
Par « composé fusogène », on entend dans le cadre de la présente invention tout composé qui peut s'ancrer dans une membrane phospholipidique telle qu'une membrane cellulaire et conduire à l'immobilisation de ladite membrane et donc à celle d'une cellule. Dans le cadre de la présente invention, le composé fusogène peut être choisi parmi les composés fusogènes non peptidiques et les composés fusogènes peptiques .By "fusogenic compound" is meant in the context of the present invention any compound that can anchor in a phospholipid membrane such as a cell membrane and lead to the immobilization of said membrane and therefore to that of a cell. In the context of the present invention, the fusogenic compound may be chosen from the compounds non-peptide fusogenic and peptic fusogenic compounds.
Par « composé fusogène non peptidique », on entend toute molécule ne contenant ni acide aminé, ni analogue d'acide aminé et capable de s'ancrer dans une membrane phospholipidique telle qu'une membrane cellulaire et conduire à l'immobilisation de ladite membrane. Parmi ces composés fusogènes non peptidiques, sont notamment connus le motif glycosyl phosphatidylinositol (GPI) ou les motifs polyisoprène tels que le motif farnésyl (motif isoprène à 15 atomes de carbone) ou le motif géranylgéranyl (motif isoprène à 20 atomes de carbone) . En effet, de nombreuses protéines de diverses fonctions, allant de la catalyse enzymatique à l'adhésion, sont attachées à la face externe de la membrane plasmique des cellules eucaryotes par un ancrage à un GPI . La phosphatase alcaline possède, au niveau de son extrémité C-terminale, un tel ancrage de structure bien définie (Ronzon, 2001, Thèse Université Claude Bernard-Lyon). L' isoprénylation est une modification post- traductionnelle qui ajoute un groupement farnésyl ou géranylgéranyl à une protéine présentant un motif particulier en position C-terminale (Maurer-Stroh et Eisenhaber, 2005, Génome Biology, vol. 6, R55) .By "non-peptide fusogenic compound" is meant any molecule containing neither amino acid nor amino acid analogue and capable of anchoring in a phospholipid membrane such as a cell membrane and lead to the immobilization of said membrane. Among these non-peptide fusogenic compounds, the glycosyl phosphatidylinositol (GPI) unit or the polyisoprene units, such as the farnesyl unit (isoprene unit with 15 carbon atoms) or the geranylgeranyl unit (20 carbon isoprene unit), are especially known. Indeed, many proteins of various functions, ranging from enzymatic catalysis to adhesion, are attached to the outer face of the plasma membrane of eukaryotic cells by anchoring to a GPI. Alkaline phosphatase has, at its C-terminus, such a well-defined anchoring structure (Ronzon, 2001, University Claude Bernard-Lyon Thesis). Isoprenylation is a post-translational modification that adds a farnesyl or geranylgeranyl moiety to a protein having a particular C-terminal pattern (Maurer-Stroh and Eisenhaber, 2005, Genome Biology, Vol 6, R55).
Par « composé peptidique », on entend dans le cadre de la présente invention toute molécule constituée d' acides aminés ou d' analogues d' acides aminés telle que des peptides, des glycopeptides, des lipopeptides, des pseudopeptides ou des peptidomimétiques . Ces composés peptidiques fusogènes peuvent être linéaires ou ramifiés, comportant entre 5 et 50 acides aminés, notamment entre 7 et 40 acides aminés et, en particulier, entre 10 et 30 acides aminés . Dans les séquences peptidiques de la présente invention, les acides aminés sont représentés par leur code à une lettre mais ils peuvent aussi être représentés par leur code à trois lettres selon la nomenclature ci-après :By "peptide compound" is meant in the context of the present invention any molecule consisting of amino acids or amino acid analogues such as peptides, glycopeptides, lipopeptides, pseudopeptides or peptidomimetics. These fusogenic peptide compounds may be linear or branched, comprising between 5 and 50 amino acids, in particular between 7 and 40 amino acids and, in particular, between 10 and 30 amino acids. In the peptide sequences of the present invention, the amino acids are represented by their one-letter code but they can also be represented by their three-letter code according to the following nomenclature:
A AIa alanineA AI alanine
C Cys cystéineCysteine Cysteine
D Asp acide aspartiqueD Asp aspartic acid
E Glu acide glutamiqueE Glu glutamic acid
F Phe phenylalanineF Phenylalanine
G GIy glycineG GIy glycine
H His histidineH his histidine
I Ile isoleucineI Isoleucine Island
K Lys lysineK Lily lysine
L Leu leucineLeucine leucine
M Met méthionineM Met methionine
N Asn asparagineN Asn asparagine
P Pro prolineP Pro proline
Q GIn glutamineQ Gin glutamine
R Arg arginineR Arg arginine
S Ser serineSerin serine
T Thr thréonineTH threonine
V Val valineValine Valley
W Trp tryptophaneW Trptophan Trp
Y Tyr tyrosineTyr Tyrosine Y
Dans une première forme de mise en œuvre de la présente invention, le composé peptidique fusogène utilisé est un peptide basique issu de protéines virales, de facteurs de transcription ou de toxines.In a first embodiment of the present invention, the fusogenic peptide compound used is a basic peptide derived from viral proteins, transcription factors or toxins.
Plusieurs peptides basiques dérivés de protéines virales, de facteurs de transcription et de toxines, possèdent la capacité de traverser les membranes sans les altérer (Thoren et al., 2000, FEBS Lett., vol. 482, pages 465-8). Ceci a conduit à l'élaboration du premier vecteur basique de 16 aminoacides appelé PénétratineSeveral basic peptides derived from viral proteins, transcription factors and toxins possess the ability to cross membranes without altering them (Thoren et al., 2000, FEBS Lett., Vol.482, pages 465-8). This led to the development of the first basic 16 amino acid vector called Penetratin
(Demande internationale WO 97/12912). Ce peptide dérive de l' homéodomaine d'un facteur de transcription de Antennapedia drosophilia . Ses propriétés particulières permettent son utilisation en tant que vecteur de transport de substances actives hydrophiles à l'intérieur des cellules. Plusieurs autres vecteurs d' internalisation sont également connus tels que ceux décrits dans la demande internationale WO 99/07728.(International application WO 97/12912). This peptide is derived from the homeodomain of an Antennapedia drosophilia transcription factor. Its particular properties allow its use as a carrier vector of hydrophilic active substances inside the cells. Several other internalisation vectors are also known such as those described in international application WO 99/07728.
Dans une seconde forme de mise en œuvre de la présente invention, le composé peptidique fusogène utilisé est un peptide dont la composition en acides aminés est riche en acides aminés hydrophobes i.e. riche en alanine, isoleucine, leucine, méthionine, phénylalanine, tryptophane, tyrosine, valine. Avantageusement, le composé peptidique fusogène comprend au moins 40%, notamment au moins 50% et, en particulier, au moins 60% d'acides aminés hydrophobes par rapport au nombre total d' acides aminés de sa séquence. De tels peptides fusogènes sont avantageusement des peptides dérivés de peptides signaux et, plus particulièrement, du domaine hydrophobe de ces derniers ou des peptides fragments de protéines membranaires notamment de virus tels que le VIH (virus de 1 ' immunodéficience humaine), le HTLV (virus du lymphome humain à cellules T) , le MLV (virus de la leucémie murine) et le virus de Herpès.In a second embodiment of the present invention, the fusogenic peptide compound used is a peptide whose amino acid composition is rich in hydrophobic amino acids ie rich in alanine, isoleucine, leucine, methionine, phenylalanine, tryptophan, tyrosine, valine. Advantageously, the fusogenic peptide compound comprises at least 40%, especially at least 50% and, in particular, at least 60% of hydrophobic amino acids relative to the total number of amino acids in its sequence. Such fusogenic peptides are advantageously peptides derived from signal peptides and, more particularly, from the hydrophobic domain of the latter or peptide fragments of membrane proteins, in particular viruses such as HIV (human immunodeficiency virus), HTLV (human T cell lymphoma virus), MLV (murine leukemia virus) and Herpes virus.
Le composé peptidique fusogène selon la présente invention est avantageusement choisi dans le groupe constitué par les peptides présentant les séquences suivantes :The fusogenic peptide compound according to the present invention is advantageously chosen from the group consisting of the peptides having the following sequences:
- AVGIGALFLGFLGAAGSTMGARS (SEQ ID NO. 1 dans la liste de séquences en annexe) correspondant à la séquence comprise entre les acides aminés 519 et 541 à l'extrémité N-terminale de la protéine Gp41 du VIH,- AVGIGALFLGFLGAAGSTMGARS (SEQ ID NO: 1 in the attached sequence listing) corresponding to the sequence between amino acids 519 and 541 at the N-terminus of the HIV Gp41 protein,
- RQIKIWFQNRRMKWKK (SEQ ID NO. 2 dans la liste de séquences en annexe) correspondant à la séquence de la 3ieme hélice de l' homéodomaine du facteur de transcription Antennapedia, peptide également connu sous le nom de Pénétratine,- RQIKIWFQNRRMKWKK (SEQ ID NO: 2 in the attached sequence listing) corresponding to the sequence of the 3 rd helix of the homeodomain of the transcription factor Antennapedia, also known as Penetratin peptide,
TAALRLGIKLTQHYFGLLTAFGSNFGTIG (SEQ IDTAALRLGIKLTQHYFGLLTAFGSNFGTIG (SEQ ID
NO. 3 dans la liste de séquences en annexe) correspondant à la séquence du domaine fusogène interne de la protéine Fl du virus du Sendai, peptide SV201 dans l'article de Ghosh et al., 2000, Biochem., vol.NO. 3 in the attached sequence listing) corresponding to the sequence of the internal fusogenic domain of the Sendai virus F1 protein, SV201 peptide in the article by Ghosh et al., 2000, Biochem., Vol.
39, pages 11581-92 ;39, pages 11581-92;
- MMIMLGAICAIIVVVIVIVFFT (SEQ ID NO. 4 dans la liste de séquences en annexe) correspondant à la séquence transmembranaire de la protéine Vamp du système SNARE intervenant dans l'exocytose,- MMIMLGAICIVIVIVIVIVFFT (SEQ ID NO: 4 in the list of sequences in the appendix) corresponding to the transmembrane sequence of the Vamp protein of the SNARE system involved in exocytosis,
- RGGRLSYSRRRFSVSVGR (SEQ ID NO. 5 dans la liste de séquences en annexe) correspondant à un peptide dérivé des protégrines et, plus particulièrement, au peptide SM1738 de la demande internationale WO 99/07728, - C(Acm)GRKKRRQRRRQC avec C (Acm) = Cys- acétamidométhyle (SEQ ID NO. 6 dans la liste de séquences en annexe) correspondant au peptide d' internalisation basique TA-T du VIH, leurs dérivés et leurs fragments.- RGGRLSYSRRRFSVSVGR (SEQ ID NO: 5 in the attached sequence listing) corresponding to a peptide derived from the protegrins and, more particularly, to the peptide SM1738 of the international application WO 99/07728, - C (Acm) GRKKRRQRRRQC with C (Acm) = Cys-acetamidomethyl (SEQ ID No. 6 in the attached sequence listing) corresponding to the TA basic peptide TA-T internalization, their derivatives and their fragments.
La présente invention envisage d'utiliser des dérivés des peptides fusogènes définis ci-dessus. Par « dérivé des peptides fusogènes », on entend des peptides qui présentent 60%, 65%, 70%, 75%, 80%, 85%, 90% et/ou 95% d'identité avec les séquences des peptides fusogènes préférés données ci-dessus. Les dérivés des peptides fusogènes peuvent également présenter, par rapport aux séquences des peptides fusogènes données ci-dessus, au moins un acide aminé supplémentaire en partie C-terminale et/ou en partie N- terminale, une modification post-traductionelle et/ou une modification chimique en particulier une glycosylation, une amidation, une acylation, une acétylation, une méthylation, ainsi que les peptides qui portent un groupement protecteur qui permet d'éviter leur dégradation.The present invention contemplates using derivatives of the fusogenic peptides defined above. By "fusogenic peptide derivative" is intended peptides which have 60%, 65%, 70%, 75%, 80%, 85%, 90% and / or 95% identity with the sequences of the preferred fusogenic peptides given above. The fusogenic peptide derivatives may also have, relative to the fusogenic peptide sequences given above, at least one additional C-terminal and / or N-terminal amino acid, a post-translational modification and / or a chemical modification, in particular glycosylation, amidation, acylation, acetylation, methylation, as well as peptides which carry a protective group which makes it possible to prevent their degradation.
Les dérivés des peptides fusogènes peuvent également être ceux dont un ou plusieurs acides aminés sont choisis dans le groupe constitué par des énantiomères, des diastéréoisomères, des acides aminés naturels de conformation D, des bêta acides aminés, des acides aminés alpha substitués, des acides aminés rares notamment l' hydroxyproline, l' hydroxylysine, l'allo- hydroxylysine, la 6-N-méthyllysine, la N-éthylglycine, la N-méthylglycine, la N-éthylasparagine, l'allo- isoleucine, la N-méthylisoleucine, la N-méthylvaline, la pyroglutamine, l'acide aminobutyrique et des acides aminés synthétiques notamment l'ornithine, la norleucine, la norvaline, la cyclohéxyl-alanine et les oméga-acides aminés. Les dérivés des peptides fusogènes couvrent selon l'invention également les rétropeptides et les rétroinversopeptides, de même que les peptides dont la chaîne latérale d'un ou plusieurs acides aminés est substituée par des groupements qui ne modifient pas l'activité fusogène desdits peptides fusogènes. Les fragments des peptides fusogènes préférés présentent avantageusement plus de 5 acides aminés, notamment plus de 10 acides aminés ou encore plus de 15 acides aminés.The fusogenic peptide derivatives may also be those in which one or more amino acids are selected from the group consisting of enantiomers, diastereoisomers, natural D-conforming amino acids, beta amino acids, alpha-substituted amino acids, amino acids hydroxyproline, hydroxylysine, allohydroxylysine, 6-N-methyllysine, N-ethylglycine, N-methylglycine, N-ethylasparagine, allo-isoleucine, N-methylisoleucine, N-methylvaline, pyroglutamine, aminobutyric acid and synthetic amino acids including ornithine, norleucine, norvaline, cyclohexyl-alanine and omega-amino acids. The derivatives of the fusogenic peptides cover, according to the invention, also the retropeptides and the retroinversopeptides, as well as the peptides whose side chain of one or more amino acids is substituted by groups which do not modify the fusogenic activity of said fusogenic peptides. The fragments of the preferred fusogenic peptides advantageously have more than 5 amino acids, especially more than 10 amino acids or more than 15 amino acids.
Il est clair que les dérivés et les fragments des peptides fusogènes susceptibles d'être mis en œuvre dans le cadre de la présente invention doivent également présenter une activité fusogène. Il sera facile pour l'homme du métier de vérifier la présence de cette activité notamment en utilisant la technique décrite dans la partie expérimentale ci- après .It is clear that the derivatives and fusogenic peptide fragments that may be used in the context of the present invention must also have a fusogenic activity. It will be easy for those skilled in the art to check the presence of this activity, in particular by using the technique described in the experimental section below.
Les peptides fusogènes, leurs dérivés et leurs fragments peuvent être des produits naturels, des produits recombinants obtenus selon des techniques de biologie moléculaire et de génie génétique bien connues de l'homme du métier ou être synthétisés chimiquement selon des techniques telles que la synthèse en phase solide ou liquide également bien connues de l'homme du métier . Dans le cadre de la présente invention, le support solide sur lequel le composé fusogène est fixé est notamment un support solide inorganique. Avantageusement, le support solide selon la présente invention est choisi dans le groupe constitué par les verres, le quartz, les silices, les céramiques (par exemple, de type oxyde) , les métaux (par exemple, aluminium, chrome, cuivre, zinc, argent, nickel, étain ou or) et les semi-conducteurs (par exemple, silicium, germanium, ITO) . Dans une autre variante de l'invention, le support solide ou la surface dudit support solide est en un matériau organique comme un polymère ou une résine incluant le nylon, le polyéthylène glycol, les polycarbonates, les polyfluoropolymères ou les composites.The fusogenic peptides, their derivatives and their fragments may be natural products, recombinant products obtained according to techniques of molecular biology and genetic engineering well known to those skilled in the art or be synthesized chemically according to techniques such as phase synthesis solid or liquid also well known to those skilled in the art. In the context of the present invention, the solid support on which the fusogenic compound is attached is in particular an inorganic solid support. Advantageously, the solid support according to the present invention is chosen from the group consisting of glasses, quartz, silicas, ceramics (for example of oxide type), metals (for example, aluminum, chromium, copper, zinc, silver, nickel, tin or gold) and semiconductors (eg silicon, germanium, ITO). In another variant of the invention, the solid support or the surface of said solid support is made of an organic material such as a polymer or a resin including nylon, polyethylene glycol, polycarbonates, polyfluoropolymers or composites.
Ledit support solide peut se présenter sous diverses formes de taille variable. A titre d'exemples et de façon non exhaustive, il peut se présenter sous forme de lames, de microplaquettes, de particules, de billes ou de microcanaux de type capillaires. Ces différents types de support peuvent avoir des tailles variant de quelques centaines de micromètres à plusieurs centimètres.Said solid support can be in various forms of variable size. By way of examples and non-exhaustively, it may be in the form of slides, chips, particles, beads or microchannels capillary type. These different types of support can have sizes ranging from a few hundred micrometers to several centimeters.
Dans une première forme de mise en œuvre de la présente invention, le support solide présente une surface portant des groupements fonctionnels (ci-après désignée par « surface fonctionnalisée ») . De façon avantageuse, ces groupements fonctionnels sont choisis parmi les groupements hydroxyles, des entités radicalaires, les fonctions alcools, aminés ou thiols. Cette fonctionnalisation peut être intrinsèque à la nature du matériau en surface du support solide mis en œuvre. De façon alternative, cette fonctionnalisation peut être obtenue par nettoyage de ladite surface par l'intermédiaire d'au moins un solvant, détergent, rayonnement ou plasma d' oxygène ou tout autre procédé permettant la formation de groupements fonctionnels tels que précédemment définis.In a first embodiment of the present invention, the solid support has a surface bearing functional groups (hereinafter referred to as "functionalized surface"). Advantageously, these functional groups are chosen from hydroxyl groups, radical entities, alcohol, amine or thiol functions. This functionalization can be intrinsic to the nature of the surface material of the solid support used. Alternatively, this functionalization can be obtained by cleaning said surface by means of at least one solvent, detergent, radiation or oxygen plasma or any other method allowing the formation of functional groups as defined above.
Dans une première variante de la présente invention, le composé fusogène peut être lié de façon directe au support solide fonctionnalisé ou non.In a first variant of the present invention, the fusogenic compound may be directly bonded to the functionalized solid support or not.
Dans une seconde variante de la présente invention, la liaison entre le composé fusogène et le support solide fonctionnalisé ou non est indirecte et réalisée au travers d'agent de jonction. Dans cette forme de mise en œuvre, un support solide fonctionnalisé est avantageusement choisi. Dans cette seconde variante, au moins un agent de jonction est greffé préalablement à la surface dudit support solide. Ce (ou ces) agent (s) de jonction assure (nt) ensuite la fixation des composés fusogènes sur le support solide et notamment sur les supports solides dont la surface est inorganique. L'homme du métier connaît différents agents de jonction utilisables. A titre d'exemple et de façon non exhaustive, cette forme de mise œuvre correspond au cas d'un support recouvert d'une couche mince d'un polymère siloxane de type polyéthylène polyéthylèneglycol ou de la polylysine (D ou L) permettant de fixer le composé fusogène. Par « polymère », on entend une répétition d'un certain nombre de motifs monomériques avantageusement compris entre 2 et 30. Dans une variante toute particulière de la présente invention, la fixation indirecte du composé fusogène sur le support solide est réalisée au moyen d'une monocouche autoassemblée organisée d'un ou de plusieurs composés organiques ou organométalliques (Si, Sn, Ge) possédant une chaîne alkyle terminée par un groupe fonctionnel. Ces groupes fonctionnels sont, à titre d'exemple, un hydroxyle, un amino, un carboxyle, un halogène ou un thiol ainsi que leur formes modifiées, notamment des formes activées ou protégées.In a second variant of the present invention, the bond between the fusogenic compound and the functionalized or non-functionalized solid support is indirect and carried out through a coupling agent. In this form of implementation, a functionalized solid support is advantageously chosen. In this second variant, at least one joining agent is grafted beforehand to the surface of said solid support. This (or these) agent (s) joining then ensue the attachment of fusogenic compounds on the solid support and in particular on solid supports whose surface is inorganic. Those skilled in the art know different usable bonding agents. By way of example and non-exhaustively, this form of implementation corresponds to the case of a support covered with a thin layer of a polyethylene glycol polyethylene glycol siloxane polymer or polylysine (D or L) for fixing the fusogenic compound. By "polymer" is meant a repetition of a number of monomeric units advantageously between 2 and 30. In a very particular variant of the present invention, the indirect fixation of the fusogenic compound on the solid support is carried out by means of an organized self-assembled monolayer of one or more organic or organometallic compounds (Si, Sn, Ge) having a chain alkyl terminated with a functional group. These functional groups are, for example, a hydroxyl, an amino, a carboxyl, a halogen or a thiol and their modified forms, especially activated or protected forms.
Ulman a décrit dans Chem. Rev., 1996, vol. 96, pages 1533-54, la formation de monocouches autoassemblées de type alkyltrichlorosilanes fonctionnalisés. Leur utilisation pour la fixation d'acides nucléiques a été décrite dans la demande de brevet FR 2 804 129. Ainsi, dans le cadre de la présente invention, la monocouche autoassemblée organisée comprend un ou plusieurs composés organosiliciés répondant à la formule I suivante :Ulman described in Chem. Rev., 1996, vol. 96, pages 1533-54, the formation of self-assembled monolayers of functionalized alkyltrichlorosilane type. Their use for the fixation of nucleic acids has been described in the patent application FR 2 804 129. Thus, in the context of the present invention, the organized self-assembled monolayer comprises one or more organosilicon compounds corresponding to the following formula I:
dans laquelle in which
- n est compris entre 3 et 40,n is between 3 and 40,
- m est égal à 1,m is 1,
- Xi, X2, X3 qui peuvent être identiques ou différents entre eux sont sélectionnés dans le groupe constitué par des groupes alkyles saturés en Ci à Ce, linéaires ou ramifiés, et des groupements hydrolysables, au moins l'un de Xi, X2 et X3 représentant un groupement hydrolysable, - A représente le groupement -0- (CH2CH2O) k- (CH2) x- dans lequel k est compris entre 1 et 100, et i un nombre entier supérieur ou égal à 0- Xi, X2, X3 which may be identical or different from each other are selected from the group consisting of linear or branched, saturated C 1 to C 6 alkyl groups, and hydrolysable groups, at least one of X 1, X 2 and X 3 representing a hydrolysable group, A represents the group -O- (CH 2 CH 2 O) k - (CH 2 ) x - in which k is between 1 and 100, and i is an integer greater than or equal to 0;
- m étant égal à 1 et k ≥ 1 • si i = 0, alors B représente un groupement -Ri, -CORi, -COORi, -CONRiR2,m being equal to 1 and k ≥ 1 • if i = 0, then B represents a group -Ri, -CORi, -COORi, -CONRiR 2 ,
• si i ≥ 1, alors B représente un groupement -ORi, -OCORi, -NRxR2, -COORi, -CONRiR2, -SRi ou un atome d'halogène. Ri et R2 peuvent être identiques ou différents représentant un atome d'hydrogène, une chaîne hydrocarbonée éventuellement substituée, saturée ou insaturée et linéaire ou ramifiée comprenant 1 à 24 atomes de carbone ou un groupement aromatique. Lorsque B représente un groupement -ORi,If i ≥ 1, then B represents a group -ORi, -OCORi, -NR x R 2 , -COORi, -CONRiR 2 , -SRi or a halogen atom. R 1 and R 2 may be identical or different, representing a hydrogen atom, an optionally substituted, saturated or unsaturated and linear or branched hydrocarbon-based chain comprising 1 to 24 carbon atoms or an aromatic group. When B represents a group -ORi,
-OCORi ou -COORi, indifféremment des valeurs de i et lorsque k ≥ 1 alors il est bien entendu que B peut représenter tout groupement résultant de la protection d'une fonction hydroxyle ou acide carboxylique tels que les groupements protecteurs décrits dans Protective groups in organic System (T. W. GREENE et al., 2 ed, Wiley Interscience) , par exemple un groupe protecteur cyclique .-OCORi or -COORi, regardless of the values of i and when k ≥ 1 then it is understood that B can represent any group resulting from the protection of a hydroxyl or carboxylic acid function such as the protective groups described in Protective groups in organic System (TW GREENE et al., 2 ed, Wiley Interscience), for example a cyclic protecting group.
De façon avantageuse, i est compris entre 0 et 100, notamment entre 0 et 50, en particulier entre 0 et 10 et, plus particulièrement, i est 0 ou 1.Advantageously, i is between 0 and 100, in particular between 0 and 50, in particular between 0 and 10 and, more particularly, i is 0 or 1.
Au sens de la présente invention, on entend par « hydrolysable » tout groupe capable de réagir avec un acide en milieu aqueux de façon à donner les composés XiH, X2H ou X3H, Xi, X2, X3 étant tels que définis dans la formule I. Selon un mode de mise en œuvre avantageux, ledit groupement hydrolysable est sélectionné dans le groupe constitué par les atomes d'halogène, le groupement —N (CH3) 2 et les groupements —OR' , R' étant un groupe alkyle saturé en Ci à Ce linéaire ou ramifié.For the purposes of the present invention, the term "hydrolyzable" means any group capable of reacting with an acid in an aqueous medium so as to give the compounds XiH, X 2 H or X 3 H, X 1 , X 2 , X 3 being as defined in formula I. According to a method of implementation Advantageously, said hydrolysable group is selected from the group consisting of halogen atoms, the group -N (CH 3 ) 2 and the groups -OR ', R' being a linear or branched C 1 -C 6 saturated alkyl group.
On entend par « halogène » aussi bien le fluor que le chlore, le brome ou l'iode.The term "halogen" means fluorine as well as chlorine, bromine or iodine.
De façon surprenante, il convient que le (ou les) composé (s) organosilicié (s) de formule I présente un éthylèneglycol pour être mis en œuvre dans le cadre de la présente invention.Surprisingly, it is appropriate that the organosilicon compound (s) of formula I have an ethylene glycol to be used in the context of the present invention.
Une monocouche autoassemblée organisée formée sur un support solide permet l'obtention d'une surface organique dense, homogène et de paramètres bien définis à la fois chimiquement et structurellement . La formation de cette monocouche, obtenue grâce aux propriétés d' autoassemblage des composés de formule I pour des valeurs de n, m, k, et i bien définies est parfaitement reproductible pour un ou chaque composé organosilicié ou pour des mélanges de plusieurs composés aussi bien en terme de quantité qu'en terme de répartition en surface du support. Cette fonctionnalisation est stable dans le temps et les molécules greffées présentent une bonne orientation vis-à-vis des molécules biologiques. Ces paramètres de distribution des organosiliciés sur le support solide sont déterminés et suivis par différentes méthodes optiques telles que l'imagerie vibrationnelle, la microscopie à force atomique, l' ellipsométrie.... En outre, la formation d'une monocouche autoassemblée organisée, très dense protège les liaisons siloxaniques vis-à-vis des traitements chimiques (acides ou basiques notamment) , ce qui permet de réaliser des réactions chimiques variées sur la surface du support. Les composés organosiliciés de formule I utilisés dans la présente invention présentent avantageusement des fonctionnalités très variées et une grande réactivité, eu égard à la nature du groupe A et la diversité des groupements B terminaux utilisables, ces groupements B pouvant bien entendu être modifiés et fonctionnalisés à volonté selon les réactions de chimie organique bien connues de l'homme du métier.An organized self-assembled monolayer formed on a solid support makes it possible to obtain a dense, homogeneous organic surface and well defined parameters both chemically and structurally. The formation of this monolayer, obtained by virtue of the self-assembling properties of the compounds of formula I for well defined values of n, m, k, and i, is perfectly reproducible for one or each organosilicon compound or for mixtures of several compounds as well. in terms of quantity in terms of surface distribution of the support. This functionalization is stable in time and the grafted molecules have a good orientation vis-à-vis the biological molecules. These organosilicon distribution parameters on the solid support are determined and monitored by different optical methods such as vibrational imaging, atomic force microscopy, ellipsometry, etc. In addition, the formation of an organized self-assembled monolayer, very dense protects the siloxane bonds vis-à-vis chemical treatments (acid or basic in particular), which allows for various chemical reactions on the surface of the support. The organosilicon compounds of formula I used in the present invention advantageously have very varied functionalities and a high reactivity, having regard to the nature of the group A and the diversity of the terminal B groups which can be used, these groups B being of course able to be modified and functionalized to will according to organic chemistry reactions well known to those skilled in the art.
Que la liaison du composé fusogène audit support solide soit directe ou indirecte, les liaisons impliquées entre le composé peptidique, le support solide et/ou l'agent de jonction sont choisies parmi les liaisons covalentes, ioniques, électrostatiques ou toute interaction chimique forte sans dégradation des liaisons siloxaniques développées entre les composés organosiliciés et le support solide.Whether the binding of the fusogenic compound to said solid support is direct or indirect, the bonds involved between the peptide compound, the solid support and / or the joining agent are chosen from covalent, ionic or electrostatic bonds or any strong chemical interaction without degradation. siloxane bonds developed between the organosilicon compounds and the solid support.
Ainsi, dans le cadre de la présente invention, le procédé pour préparer un support solide susceptible d' immobiliser au moins une cellule ou au moins une partie de cellule comprend avantageusement les étapes suivantes : a) la préparation d'un support solide tel que précédemment défini, modifié par une monocouche autoassemblée comprenant au moins un composé organosilicié répondant à la formule I telle que précédemment définie, ledit composé organosilicié présentant à son extrémité un halogène, une fonction hydroxyle, acide ou aminé, protégée ou non, activée ou non, b) éventuellement, la déprotection de la fonction terminale dudit composé organosilicié utilisé à l' étape (a) , c) éventuellement, dans le cas où le support solide modifié porte des fonctions acide carboxylique terminales, l'activation de ces fonctions, d) éventuellement, la déprotection des chaînes latérales et de l'aminé terminale du composé peptidique fusogène tel que précédemment défini, e) éventuellement, dans le cas où le support solide modifié porte des fonctions hydroxy ou aminé terminales, l'activation de la fonction acide carboxylique terminale du composé peptidique fusogène tel que précédemment défini, f) la mise en contact du support solide modifié obtenu aux étapes (a) , (b) ou (c) par immersion, pendant une durée déterminée, avec une ou plusieurs solutions, dans un ou plusieurs solvants polaires, du (ou des) composé (s) peptidique (s) tel (s) que précédemment défini (s) à immobiliser, g) éventuellement, le lavage du support sur lequel sont immobilisés ledit (ou lesdits) composé (s) peptidique (s) suite à l'étape (f) .Thus, in the context of the present invention, the process for preparing a solid support capable of immobilizing at least one cell or at least one cell part advantageously comprises the following steps: a) the preparation of a solid support such as above defined, modified by a self-assembled monolayer comprising at least one organosilicon compound corresponding to formula I as defined above, said organosilicon compound having at its end a halogen, a hydroxyl function, acid or amine, protected or not, activated or not, b) optionally, the deprotection of the terminal function of said organosilicon compound used in step (a), c) optionally, in the case where the modified solid support carries terminal carboxylic acid functions, the activation of these functions, d) optionally, the deprotection of the side chains and of the terminal amine of the fusogenic peptide compound as defined above, e) optionally, in the case where the modified solid support bears terminal hydroxy or amino functions, the activation of the terminal carboxylic acid function of the fusogenic peptide compound as defined above, f) bringing into contact the modified solid support obtained in steps (a), (b) or (c) by immersion, for a specified time, with one or more solutions, in one or more polar solvents, of the compound (s) (s) peptide (s) such (s) as previously defined (s) to immobilize, g) optionally, the washing of the support on which are immobilized said (or said) compound (s) peptide (s) following the step (f).
L'étape (b) de traitement peut par exemple être un traitement basique et éventuellement par ultrasons afin d'éliminer les composés organosiliciés seulement adsorbés en surface. Les étapes (c) et (e) d' activation des fonctions acide carboxylique peuvent par exemple être effectuées à l'aide d'une solution de N-hydroxysuccinimide ou de carbodiimide, ou encore tout autre réactif d' activation convenable et connu de l'homme du métier.The treatment step (b) may for example be a basic treatment and possibly ultrasound in order to eliminate the organosilicon compounds only adsorbed on the surface. The steps (c) and (e) of activation of the carboxylic acid functions may, for example, be carried out using a solution of N-hydroxysuccinimide or of carbodiimide, or else any other suitable activating reagent known in the art. skilled person.
L'étape (f) est réalisée dans des conditions de température de O à 700C et dans une gamme de pression satisfaisante. Au cours de l'étape (f) , il est bien entendu que, pour solubiliser les composés peptidiques, toute solution permettant une bonne solubilité de ces derniers et un contrôle de 1' évaporation de la solution sera utilisée. La fixation des composés peptidiques au cours de l'étape (f) pourra être suivie par différentes méthodes optiques ou spectroscopiques (vibrationnelle, UV visible) , imagerie Infra-Rouge ou Raman, Microscopie à force atomique, ellipsométrie ...Step (f) is carried out under temperature conditions of 0 to 70 ° C. and in a satisfactory pressure range. During step (f), it is understood that, to solubilize the peptide compounds, any solution allowing a good solubility of the latter and a control of the evaporation of the solution will be used. The fixation of the peptide compounds during step (f) may be followed by different optical or spectroscopic methods (vibrational, visible UV), infrared or Raman imaging, atomic force microscopy, ellipsometry, etc.
Les composés peptidiques fusogènes susceptibles d'être utilisés aux étapes (d) , (e) ou (f) peuvent être utilisés seuls ou en mélange.The fusogenic peptide compounds that can be used in steps (d), (e) or (f) can be used alone or as a mixture.
Lors de l'étape (g) de lavage notamment dans un bain d'eau osmosée, le support sur lequel les composés peptidiques sont greffés peut être soumis à des ultrasons et ce, pour éliminer, sans fragiliser la couche greffée, les composés peptidiques seulement adsorbés sur le support.During step (g) of washing, in particular in an osmosis water bath, the support on which the peptide compounds are grafted can be subjected to ultrasound and this, to eliminate, without weakening the grafted layer, the peptide compounds only adsorbed on the support.
La présente invention concerne également un procédé pour immobiliser au moins une cellule et/ou au moins une partie de cellule. Ce procédé comprend les étapes suivantes : a') la préparation d'un support selon un procédé tel que défini précédemment, b' ) la préparation d'une suspension cellulaire contenant au moins une cellule ou au moins une partie de cellule, c' ) la mise en contact du support solide tel que préparé à l'étape (a') par immersion pendant une durée indéterminée dans la suspension cellulaire préparée à l'étape (b' ) , d' ) au moins un lavage du support obtenu à l'étape (c' ) sur lequel est immobilisée ladite cellule ou ladite partie de cellule. La préparation d'une suspension cellulaire à l'étape (b' ) est avantageusement réalisée en diluant les cellules ou parties de cellule dans un tampon susceptible de conserver l'intégrité des cellules et des membranes cellulaires. Préalablement à cette étape (b' ) , les cellules peuvent être soumises à différents traitements tel qu'une centrifugation, un lavage ou une concentration. Ces cellules et parties de cellules comme des membranes cellulaires sont telles que décrites ci-après. L'étape (c' ) est avantageusement réalisée dans des conditions de température allant de 0 à 500C et de pression convenable.The present invention also relates to a method for immobilizing at least one cell and / or to least one cell part. This process comprises the following steps: a ') the preparation of a support according to a process as defined above, b') the preparation of a cell suspension containing at least one cell or at least one cell part, c ') contacting the solid support as prepared in step (a ') by immersion for an indefinite period in the cell suspension prepared in step (b'), d ') at least one wash of the support obtained in the step (c ') on which said cell or said cell part is immobilized. The preparation of a cell suspension in step (b ') is advantageously carried out by diluting the cells or parts of cells in a buffer capable of preserving the integrity of the cells and cell membranes. Prior to this step (b '), the cells may be subjected to different treatments such as centrifugation, washing or concentration. These cells and cell parts as cell membranes are as described below. Step (c ') is advantageously carried out under conditions of temperature ranging from 0 to 50 ° C. and of suitable pressure.
Dans le cadre de la présente invention, on entend par « cellule », aussi bien une cellule de type procaryote que de type eucaryote. Parmi les cellules eucaryotes, la cellule peut être une levure telle qu'une levure du genre Saccharomyces ou Candida, une cellule de mammifères, une cellule végétale ou une cellule d'insectes. Les cellules de mammifères peuvent notamment être des cellules tumorales, des cellules de lignée somatique normale ou des cellules souches. Il peut s'agir de manière non exclusive de globules rouges, d' ostéoblastes, de cellules neuronales, d' hépatocytes, de cellules musculaires, des lymphocytes ou de cellules progénitrices. Les cellules de type procaryote sont des bactéries qui peuvent être des gram + OU -. Parmi ces bactéries, on peut citer, à titre d'exemples et de façon non-exhaustive, les bactéries appartenant aux embranchements des spirochètes et des chlamydiae, les bactéries appartenant aux familles des entérobactéries (telles que Escherichia coli) , des streptococcacées (telles que streptococcus) , des microccacées (telles que staphylococcus) , des légionelles, des mycobactéries, des bacillacées et autres.In the context of the present invention, the term "cell", both a prokaryotic type cell and eukaryotic type. Among the cells eukaryotes, the cell may be a yeast such as a yeast of the genus Saccharomyces or Candida, a mammalian cell, a plant cell or an insect cell. Mammalian cells can be, for example, tumor cells, normal somatic line cells or stem cells. It may be non-exclusively red blood cells, osteoblasts, neuronal cells, hepatocytes, muscle cells, lymphocytes or progenitor cells. Prokaryotic cells are bacteria that can be gram + OR -. Among these bacteria, mention may be made, by way of examples and in a non-exhaustive manner, of the bacteria belonging to the branches of spirochetes and chlamydiae, the bacteria belonging to the families of Enterobacteriaceae (such as Escherichia coli), Streptococcaceae (such as streptococcus), microbacteria (such as staphylococcus), legionellae, mycobacteria, bacillaceae and others.
Les cellules mises en œuvre dans le cadre de la présente invention peuvent être obtenues à partir d'une culture cellulaire primaire ou d'une culture d'une lignée cellulaire ou à partir d'un échantillon d'un fluide tel que de l'eau ou un fluide biologique préalablement extrait d'un corps humain ou animal, ledit échantillon pouvant avoir subi différents traitements préalables comme une centrifugation, une concentration, une dilution .... Par « partie de cellule », on entend dans le cadre de la présente invention notamment l'intégralité ou une portion de la membrane cellulaire dans laquelle le composé fusogène et notamment le peptide fusogène, ses dérivés ou ses fragments tels que précédemment définis viennent s'ancrer. Par « membrane cellulaire », on entend dans le cadre de la présente invention aussi bien la membrane plasmique riche en phospholipides des cellules eucaryotes (également appelée membrane cytoplasmique, plasmalemme ou membrane plasmatique) que la membrane plasmique et la paroi cellulaire glucidique (contenant du peptidoglycane) des bactéries ou des cellules de plantes.The cells used in the context of the present invention may be obtained from a primary cell culture or from a cell line culture or from a sample of a fluid such as water. or a biological fluid previously extracted from a human or animal body, said sample may have undergone various prior treatments such as centrifugation, concentration, dilution .... By "part of cell" is meant in the context of this particular invention the whole or a portion of the cell membrane in which the fusogenic compound and in particular the fusogenic peptide, its derivatives or fragments as defined above are anchored. For the purposes of the present invention, the term "cell membrane" is intended to mean both the phospholipid-rich plasma membrane of eukaryotic cells (also called the cytoplasmic membrane, plasma membrane or plasma membrane) and the plasma membrane and the carbohydrate cell wall (containing peptidoglycan). ) bacteria or plant cells.
Les parties de cellules mises en œuvre dans le cadre de la présente invention peuvent être obtenues à partir de cellules issues d'une culture cellulaire ou d'un échantillon d'un fluide tels que précédemment définis. L'homme du métier connaît différentes techniques permettant d'obtenir, à partir de cellules ou de cultures cellulaires, des membranes cellulaires, des parties de membranes cellulaires, des fractions riches en membranes cellulaires telles que la technique de partage de phase.The cell parts used in the context of the present invention may be obtained from cells derived from a cell culture or from a sample of a fluid as previously defined. Those skilled in the art know various techniques for obtaining, from cells or cell cultures, cell membranes, parts of cell membranes, fractions rich in cell membranes such as the phase-sharing technique.
La présente invention concerne également un support solide susceptible d'être préparé par le procédé de préparation selon l'invention et/ou susceptible d'être obtenu après immobilisation d'une cellule et/ou partie de cellule sur ce dernier. La présente invention concerne aussi un kit de diagnostic contenant au moins un support solide selon l'invention. Dans une première forme de mise en œuvre, la présente invention concerne un support solide tel que précédemment défini sur lequel est fixé un composé fusogène capable de s'insérer dans les membranes cellulaires, ledit composé étant éventuellement ancré dans au moins une cellule et/ou au moins une partie de cellule telles que précédemment décrites. Le support selon cette première forme de mise en œuvre est remarquable de par le fait qu' il peut être conservé avant toute utilisation. Il peut notamment être congelé, séché ou lyophilisé. L'homme du métier connaît différentes techniques de conservation n'affectant pas la structure protéique du composé fusogène fixé sur ledit support.The present invention also relates to a solid support capable of being prepared by the preparation method according to the invention and / or capable of being obtained after immobilization of a cell and / or part of cell on the latter. The present invention also relates to a diagnostic kit containing at least one solid support according to the invention. In a first embodiment, the present invention relates to a solid support such as than previously defined on which is fixed a fusogenic compound capable of being inserted into the cell membranes, said compound being optionally anchored in at least one cell and / or at least one cell part as previously described. The support according to this first form of implementation is remarkable in that it can be stored before any use. It can especially be frozen, dried or freeze-dried. Those skilled in the art know different preservation techniques that do not affect the protein structure of the fusogenic compound attached to said support.
Dans une seconde forme de mise en œuvre, la présente invention concerne un support solide tel que précédemment défini sur lequel est fixé un composé fusogène capable de s'insérer dans les membranes cellulaires, ledit composé étant ancré dans au moins une cellule et/ou au moins une partie de cellule telles que précédemment décrites. Dans cette forme de mise en œuvre, on peut parler d'un support solide activé i.e. activé par les cellules ou parties de cellule ancrées sur ledit support au moyen du composé fusogène.In a second embodiment, the present invention relates to a solid support as defined above on which is fixed a fusogenic compound capable of being inserted into the cell membranes, said compound being anchored in at least one cell and / or minus a cell part as previously described. In this embodiment, it is possible to speak of an activated solid support i.e. activated by the cells or parts of cells anchored on said support by means of the fusogenic compound.
Le support objet de la présente invention décrit permet une immobilisation rapide, simple, reproductible, aspécifique, homogène, d'éléments cellulaires donnés et peut être utilisé pour la détection : de cellules venant s'immobiliser grâce aux composés fusogènes décorant le support solide (première forme de mise en œuvre ci-dessus) , - d'anticorps ou de ligands respectivement spécifiques d'antigènes ou de récepteurs présents sur les cellules ou parties de cellule immobilisées sur le support solide (seconde forme de mise en œuvre ci- dessus) , de composés à activité thérapeutique potentielle en les testant sur des cellules ou parties de cellule immobilisées sur le support solide, par exemple, des cellules cancéreuses (seconde forme de mise en œuvre ci-dessus) .The support object of the present invention described allows rapid immobilization, simple, reproducible, aspecific, homogeneous, given cellular elements and can be used for the detection of cells coming to rest with the fusogenic compounds decorating the solid support (first form of implementation above), of antibodies or ligands respectively specific for antigens or receptors present on the cells or parts of cells immobilized on the solid support (second embodiment above), of compounds with potential therapeutic activity by testing them on cells or parts of cells immobilized on the solid support, for example, cancer cells (second embodiment above).
La présente invention trouve une application particulièrement intéressante dans le domaine du diagnostic biomédical ou de la surveillance sanitaire de fluides biologiques ou destinés à l'usage humain ou animal.The present invention finds a particularly interesting application in the field of biomedical diagnosis or sanitary monitoring of biological fluids or intended for human or animal use.
La présente invention se rapporte à l'utilisation, pour l'immobilisation d'éléments biomoléculaires ou cellulaires, d'un support solide éventuellement modifié par une monocouche assemblée organisée d'un ou plusieurs composés organométalliques tels que, par exemple, les organosiliciés et aux procédés d' analyse par des méthodes optiques ou spectroscopiques de ces éléments biologiques. Par conséquent, la présente invention concerne l'utilisation d'un support solide tel que précédemment défini dans le cadre d'une veille sanitaire. En effet, les différents composés fusogènes susceptibles d'être utilisés s'insèrent dans la membrane cellulaire de façon aspécifique. Il est donc possible d'utiliser le support présentant le composé fusogène dans le cadre d'une veille sanitaire visant à vérifier la présence ou non de cellules contaminantes du type bactéries dans un fluide. La présente invention permet de concentrer la cible pour la rendre décelable. Cette veille sanitaire peut notamment consister en un contrôle de la qualité microbiologique de l'eau ou en un contrôle microbiologique industriel.The present invention relates to the use, for the immobilization of biomolecular or cellular elements, of a solid support optionally modified by an organized monolayer of one or more organometallic compounds such as, for example, organosilicon compounds and methods of analysis by optical or spectroscopic methods of these biological elements. Therefore, the present invention relates to the use of a solid support as previously defined in the context of a health watch. Indeed, the various fusogenic compounds that can be used fit into the cell membrane in a non-specific manner. It is therefore possible to use the support having the compound fusogen as part of a health watch to verify the presence or absence of contaminating cells of the bacteria type in a fluid. The present invention allows to focus the target to make it detectable. This health watch can include the control of the microbiological quality of the water or an industrial microbiological control.
La présente invention concerne l'utilisation d'un support solide tel que précédemment défini et/ou d'un procédé d'immobilisation d'au moins une cellule et/ou partie de cellule sur un support solide dans la recherche d'anticorps et/ou de ligands respectivement spécifiques d'antigènes ou de récepteurs présents à la surface des cellules ou parties de cellule fixées audit support. Cette forme de mise en œuvre est particulièrement intéressante dans le cas de la recherche d'auto-anticorps lorsqu'il y a suspicion de maladie auto-immune telle que la maladie de Hashimoto ou dans la cas de la recherche d' anticorps irréguliers acquis secondairement notamment en vue d'une transfusion sanguine. Dans cette forme de mise en œuvre particulière, deux variantes peuvent être envisagées :The present invention relates to the use of a solid support as defined above and / or a method for immobilizing at least one cell and / or part of a cell on a solid support in the search for antibodies and / or ligands respectively specific for antigens or receptors present on the surface of the cells or cell parts attached to said support. This form of implementation is particularly interesting in the case of the search for autoantibodies when there is suspicion of autoimmune disease such as Hashimoto's disease or in the case of the search for irregular antibodies acquired secondarily. especially for blood transfusion. In this particular form of implementation, two variants can be envisaged:
- soit sont fixés, au support solide via le composé fusogène, des érythrocytes dont le groupe et/ou le phénotypage sont connus et le support solide ainsi activé est mis en présence d'un fluide préalablement extrait d'un individu tel qu'un mammifère dont on cherche à définir le groupe et/ou le phénotypage, ledit fluide étant avantageusement du sérum sanguin, - soit sont fixés, au support solide via le composé fusogène, des érythrocytes d'un individu tel qu'un mammifère dont on cherche à définir le groupe et/ou le phénotypage sanguin et le support solide ainsi activé est mis en présence d'un fluide contenant au moins un anticorps anti-rhésus ou dirigé contre l'antigène défini.or are fixed, to the solid support via the fusogenic compound, erythrocytes whose group and / or phenotyping are known and the solid support thus activated is brought into the presence of a fluid previously extracted from an individual such as a mammal whose group and / or phenotyping is to be defined, said fluid being advantageously blood serum, or are fixed to the solid support via the fusogenic compound, erythrocytes of an individual such as a mammal whose group and / or blood phenotyping is to be defined and the solid support thus activated is placed in the presence of a fluid containing at least one anti-rhesus antibody or directed against the defined antigen.
La détection d'un anticorps sur la cellule ou partie de cellule peut être effectuée par différentes méthodes optiques ou spectroscopiques (vibrationnelle, UV visible) , imagerie Infra-Rouge ou Raman, Microscopie à force atomique, ellipsométrie ...The detection of an antibody on the cell or part of the cell can be carried out by different optical or spectroscopic methods (vibrational, visible UV), Infra-Red or Raman imaging, atomic force microscopy, ellipsometry ...
En effet, tous ces différents composants possèdent des signatures spectrales caractéristiques permettant leur détection. Il est possible de réaliser un système de détection différentiel permettant d'observer la présence ou non de biomolécules fixées, de façon spécifique, sur les éléments cellulaires ou de cellules elles-mêmes ancrées au support solide via le composé fusogène. La mise en œuvre de telles techniques de détection est un travail de routine pour l'homme du métier .Indeed, all these different components have characteristic spectral signatures for their detection. It is possible to realize a differential detection system for observing the presence or absence of biomolecules fixed, specifically, on the cellular elements or cells themselves anchored to the solid support via the fusogenic compound. The implementation of such detection techniques is routine work for those skilled in the art.
A titre d'exemple, un montage simple de transmission Infra-Rouge calibré dans le domaine de fréquence caractéristique des groupes amides permettra d' obtenir rapidement le pourcentage de biomolécules fixées en comparaison à des échantillons non exposés ou non reconnus. II est aussi envisageable par l'intermédiaire de microscopie Infra-Rouge de réaliser une cartographie en imagerie du support ainsi traité. Il est donc possible de réaliser une puce par nanotechnologie et ainsi obtenir une multitude de détections pour cibler un très grand nombre d' échantillons .By way of example, a simple infra-red transmission assembly calibrated in the characteristic frequency domain of the amide groups will make it possible to rapidly obtain the percentage of fixed biomolecules in comparison with unexposed or unrecognized samples. It is also possible via Infra-Red microscopy to perform imaging mapping of the support thus treated. It is therefore possible to make a chip by nanotechnology and thus obtain a multitude of detections to target a very large number of samples.
D'autres caractéristiques et avantages de la présente invention apparaîtront encore à la lecture des exemples ci-après donnés à titre illustratif et non limitatif et faisant référence aux figures annexées.Other features and advantages of the present invention will become apparent on reading the examples given below by way of illustration and not limitation and with reference to the appended figures.
BRÈVE DESCRIPTION DES DESSINS La figure 1 est une représentation schématique de la synthèse en phase solide des peptides 1 et 2. Les étapes de déprotection et couplage sont répétées pour chaque acide aminé à incorporer. La durée d'un cycle est de 2 à 3 heures. La figure 2 présente le rapport entre le spectre Infra-Rouge de matériaux en verre greffés par deux agents de jonction (composés ou bras organiques C et D) avant et après traitement à la potasse après soustraction du spectre du verre brut. La figure 3 est une représentation schématique de la fixation indirecte d'un peptide sur un support solide via un bras de jonction.BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a schematic representation of the solid phase synthesis of peptides 1 and 2. The deprotection and coupling steps are repeated for each amino acid to be incorporated. The duration of a cycle is 2 to 3 hours. Figure 2 shows the ratio between the infrared spectrum of glass materials grafted by two joining agents (compounds or organic arms C and D) before and after treatment with potassium after subtraction of the spectrum of the raw glass. Figure 3 is a schematic representation of the indirect binding of a peptide on a solid support via a joining arm.
La figure 4 présente le rapport entre le spectre Infra-Rouge de matériaux en verre greffés par les agents de jonction C et D puis par le peptide 1 après soustraction du spectre du verre brut.FIG. 4 shows the ratio between the infrared spectrum of glass materials grafted by the joining agents C and D and then by the peptide 1 after subtraction of the spectrum of the raw glass.
La figure 5 présente le rapport entre le spectre Infra-Rouge des différents matériaux (verre + composés C et D (bras) ; verre + bras + peptide 1 ; verre + peptide 1) ayant ou non subi un traitement par les ultrasons après soustraction du spectre du verre brut .Figure 5 shows the ratio between the Infra-Red spectrum of the different materials (glass + compounds C and D (arm), glass + arm + peptide 1, glass + peptide 1) whether or not treated with ultrasound after subtraction of the spectrum of the raw glass.
La figure 6 présente le rapport entre le spectre Infra-Rouge de matériaux en verre greffés par les agents de jonction C et D puis par le peptide 2 après soustraction du spectre du verre brut.FIG. 6 shows the ratio between the infrared spectrum of glass materials grafted by the linking agents C and D and then by the peptide 2 after subtraction of the spectrum of the raw glass.
La figure 7 présente les clichés de microscopie photonique de différents supports verre mis en contact avec une suspension cellulaire puis rincés. Les clichés des figures 7A et 7B correspondent respectivement :FIG. 7 presents photonic microscopy images of different glass supports brought into contact with a cell suspension and then rinsed. The snapshots of FIGS. 7A and 7B respectively correspond to:
- à un verre fonctionnalisé par l'agent de couplage que sont les agents de jonction C et D puis par le peptide 1, - à un verre fonctionnalisé par l'agent de couplage que sont les agents de jonction C et D puis par le peptide 2.to a glass functionalized with the coupling agent, which are the linking agents C and D and then with the peptide 1, to a glass functionalized with the coupling agent, which are the coupling agents C and D, and then with the peptide 2.
La figure 8 est une représentation schématique du biorécepteur tel que visualisé sur le cliché de la figure 7B sur lequel sont fixés des anticorps spécifiques des antigènes membranaires des érythrocytes .FIG. 8 is a schematic representation of the bioreceptor as visualized on the plate of FIG. 7B on which antibodies specific for membrane antigens of erythrocytes are fixed.
La figure 9 présente les clichés de microscopie électronique à balayage de différents supports silicium oxydé mis en contact avec une suspension cellulaire puis rincés. Les clichés des figures 9A à 9D correspondent respectivement :Figure 9 shows the scanning electron micrographs of various oxidized silicon supports brought into contact with a cell suspension and rinsed. The snapshots of FIGS. 9A to 9D respectively correspond to:
- à un support silicium oxydé après traitement UV, - à un support silicium fonctionnalisé par les agents de jonction C et D, - à un support silicium fonctionnalisé par les agents de jonction C et D puis par le peptide 1,an oxidized silicon support after UV treatment, a silicon support functionalized by the C and D junction agents, a silicon support functionalized with the linking agents C and D and then with the peptide 1,
- à un support silicium fonctionnalisé par les agents de jonction C et D puis par le peptide 2.a silicon support functionalized by the linking agents C and D and then by the peptide 2.
EXPOSÉ DÉTAILLÉ DE MODES DE RÉALISATION PARTICULIERSDETAILED PRESENTATION OF PARTICULAR EMBODIMENTS
I. Synthèse peptidique .I. Peptide synthesis.
Deux peptides synthétisés au laboratoire ont été utilisés : - le peptide fusogène 519-541 correspondant à l'extrémité NH2 de la protéine Gp41 du virus du V. I. H. (peptide 2) dont la séquence est la suivante : AVGIGALFLGFLGAAGSTMGARS (SEQ ID NO: 1 dans la liste de séquences en annexe) , - le peptide de synthèse, issu de la protéine Gp46 du virus H.T.L.V.-l (peptide 1) dont la séquence (séquence 242-261) est la suivante : SPNVSVPSSSSTPLLYPSLA (SEQ ID NO: 7 dans la liste de séquences en annexe) . Le peptide 1 est particulièrement intéressant. En effet, il existe un anticorps spécifiquement dirigé contre ce peptide 1 (appelé DB4), ce qui permet d'évaluer la conservation de sa fonctionnalité après greffage.Two peptides synthesized in the laboratory were used: the fusogenic peptide 519-541 corresponding to the NH 2 end of the HIV virus Gp41 protein (peptide 2) whose sequence is as follows: AVGIGALFLGFLGAAGSTMGARS (SEQ ID NO: 1 in the list of sequences in the appendix), the synthetic peptide, derived from the HTLV-1 virus protein Gp46 (peptide 1) whose sequence (sequence 242-261) is the following: SPNVSVPSSSSTPLLYPSLA (SEQ ID NO: 7 in FIG. list of sequences in annex). Peptide 1 is particularly interesting. Indeed, there is an antibody specifically directed against this peptide 1 (called DB4), which makes it possible to evaluate the preservation of its functionality after grafting.
Une synthèse peptidique en phase solide (S. P. P. S.) selon la stratégie Fmoc a été utilisée pour synthétiser ces deux peptides.Solid phase peptide synthesis (S.P.S.) according to the Fmoc strategy was used to synthesize these two peptides.
Selon la stratégie S. P. P. S., la synthèse s'effectue de façon récurrente à partir du premier aminoacide, ancré sur le support solide par sa fonction carboxylique (étape 1, Figure 1) . Le groupement 9- fluorénylméthoxycarbonyle Fmoc (baso-labile) est utilisé pour la protection temporaire de la fonction α- aminée. La libération de cette fonction est l'étape suivante de la synthèse (étape 2) . Le deuxième aminoacide, dont la fonction α-carboxylique a été préalablement activée, est couplé avec le groupe α- amino libre de l' aminoacide immobilisé sur la résineAccording to the SPPS strategy, the synthesis is carried out recurrently from the first amino acid, anchored on the solid support by its function carboxylic acid (step 1, Figure 1). The 9-fluorenylmethoxycarbonyl group Fmoc (baso-labile) is used for the temporary protection of the α-amino function. The release of this function is the next step in the synthesis (step 2). The second amino acid, whose α-carboxylic function has been activated beforehand, is coupled with the free α-amino group of the immobilized amino acid on the resin.
(étape 3) . Les étapes 2 et 3 sont répétées pour chaque résidu à incorporer.(step 3). Steps 2 and 3 are repeated for each residue to be incorporated.
Les synthèses ont été réalisées dans les conditions standards du protocole Fmoc à l'aide d'un synthétiseur automatique et en débutant la chaîne de réaction par un aminoacide greffé sur une résine de type Wang. Les réactions de couplage ont été effectuées dans la N-méthylpyrrolidone (NMP) , solvant aprotique polaire qui permet une solvatation maximale de l'ensemble peptide-résine . Cette résine présente un taux de présubstitution d'environ 0,5-0,75 iπmol.g"1. Elle est constituée de billes de polystyrène réticulé avec 1% de divinylbenzène et fonctionnalisée par l'alcool p-benzyloxybenzylique (bras) qui permet la liaison au premier aminoacide.The syntheses were carried out under the standard conditions of the Fmoc protocol using an automatic synthesizer and by starting the reaction chain with an amino acid grafted onto a Wang-type resin. The coupling reactions were carried out in N-methylpyrrolidone (NMP), polar aprotic solvent which allows maximum solvation of the peptide-resin complex. This resin has a presubstitution rate of approximately 0.5-0.75 μmol · g -1, it consists of polystyrene beads crosslinked with 1% of divinylbenzene and functionalized with p-benzyloxybenzyl alcohol (arm) which allows binding to the first amino acid.
II. Préparation du support fonctionnalisé .II. Preparation of the functionalized support.
II.1. Préparation du support en verre au greffage .II.1. Preparation of the glass support for grafting
Le support solide choisi est un support inorganique en verre ayant subi un traitement permettant l'obtention d'une surface propre et réactive . En effet, il est nécessaire d'effectuer un nettoyage efficace avant tout greffage, nettoyage qui ne doit toutefois pas altérer la nature de la surface. Pour cela, un détergent alcalin « Hellmanex II» a été employé afin d'optimiser le nettoyage. L'état de surface du matériau est observé en moyen Infra-Rouge par transmission après une immersion de 15 minutes à 50°C dans une solution aqueuse d'Hellmanex à 2%. Le matériau est ensuite rincé à l'aide d'eau osmosée, puis un traitement à l'aide de jets d'eau osmosée est appliqué systématiquement. L'analyse des plaques après ce nettoyage a permis de constater la disparition des bandes caractéristiques de la pollution organiqueThe solid support chosen is an inorganic glass substrate which has been subjected to a treatment which makes it possible to obtain a clean and reactive surface. Indeed, it is necessary to carry out an effective cleaning before any grafting, cleaning which must not however alter the nature of the surface. For this, an alkaline detergent "Hellmanex II" was used to optimize cleaning. The surface condition of the material is observed in medium Infra-Red by transmission after immersion for 15 minutes at 50 ° C in an aqueous solution of Hellmanex 2%. The material is then rinsed with osmosis water and then treated with jets of osmosis water is applied systematically. The analysis of the plates after this cleaning made it possible to note the disappearance of the characteristic bands of the organic pollution
(groupements CH3 (2955 et 2875 cm"1) et CH2 (2920 et 2850 cm"1) ) .(CH 3 (2955 and 2875 cm -1 ) and CH 2 (2920 and 2850 cm -1 ) groups).
II.2. Préparation des composés organiques . Après conditionnement du support solide en verre au greffage, des bras organiques destinés à fonctionnaliser ledit support ont été synthétisés. L'utilisation de bras d'une longueur supérieure à 17 carbones a été choisie afin d'obtenir des couches denses entraînant une bonne protection de la liaison siloxanique (Si-O-Si) tout en conservant une bonne réactivité de la fonction terminale. Des molécules trichlorosilylées, de longueur suffisante et possédant une extrémité fonctionnelle, ne sont pas commerciales. La synthèse de bras possédant de telles propriétés et notamment une fonction alcool pour l'extrémité fonctionnelle permettant la fixation ultérieure d'un peptide a été entreprise. a. Synthèse de l' acétate de docos-21-ènyle . i. Docos-21-èn-l-ol .II.2. Preparation of organic compounds After conditioning the solid support glass grafting, organic arms for functionalizing said support were synthesized. The use of arms longer than 17 carbons was chosen in order to obtain dense layers resulting in good protection of the siloxane bond (Si-O-Si) while retaining a good reactivity of the terminal function. Trichlorosilylated molecules of sufficient length and possessing a functional end are not commercially available. The synthesis of arms possessing such properties and in particular an alcohol function for the functional end allowing the subsequent fixing of a peptide has been undertaken. at. Synthesis of docos-21-enyl acetate. i. Docos-21-en-l-ol.
La réaction fréquemment utilisée pour obtenir une longue chaîne carbonée est le couplage de deux chaînes via deux carbones sp3. Les réactions d' hétérocouplages sont réalisées entre un réactif de Grignard et un halogénure en utilisant un catalyseur à base de cuivre par exemple du LiCuCl4 ou de 1 ' iodure de cuivre I.The reaction frequently used to obtain a long carbon chain is the coupling of two chains via two sp 3 carbons. The heterocoupling reactions are carried out between a Grignard reagent and a halide using a copper catalyst, for example LiCuCl 4 or copper iodide I.
Le docos-21-èn-l-ol est de formule :The docos-21-en-1-ol is of formula:
OHOH
2020
C22H44O MM = 324,60 g. mol"1 C 22 H 44 O MM = 324.60 g. mol "1
Première étape : Formation du 11-bromo magnésium-1-undécèneFirst step: Formation of 11-bromo magnesium-1-undecene
A une solution de THF anhydre contenant 2,7g (107 mmoles) de magnésium sous forme de tournures, est ajoutée, goutte à goutte, une solution de 5g (21,4 mmoles) de 11-bromo-l-undécène dans 21 ml de THF. Cette réaction est réalisée sous atmosphère inerte. L'exothermie de la réaction est régulée à l'aide d'un bain de glace. Puis, 5 ml de dibromoéthane sont ajoutés à ce mélange. La réaction est maintenue active pendant une heure et le surnageant est prélevé à l'aide d'une seringue puis placé dans un ballon sous atmosphère inerte .To a solution of anhydrous THF containing 2.7 g (107 mmol) of magnesium in the form of turnings is added, dropwise, a solution of 5 g (21.4 mmol) of 11-bromo-1-undecene in 21 ml of THF. This reaction is carried out under an inert atmosphere. The exothermicity of the reaction is regulated by means of an ice bath. Then, 5 ml of dibromoethane is added to this mixture. The reaction is kept active for one hour and the supernatant is removed using a syringe and placed in a flask under an inert atmosphere.
Deuxième étape : Formation de l'alcoolate de lithium A une solution de THF anhydre sont ajoutés 5,4g (21,4 mmoles) de 10-bromo-undécanol . La solution est placée à -78°C sous atmosphère inerte, puis à l'aide d'une ampoule équi-pression, 0,71 ml (23,45 mmoles) de méthyl-lithium est ajouté puis la réaction est laissée progressivement revenir à température ambiante .Second step: Formation of lithium alkoxide To a solution of anhydrous THF is added 5.4 g (21.4 mmol) of 10-bromo-undecanol. The solution is placed at -78.degree. C. under an inert atmosphere, then with an equi-pressure ampoule, 0.71 ml (23.45 mmol) of methyl lithium is added and the reaction is then allowed to gradually return to ambient temperature .
Troisième étape : Formation du docos-21-èn- l-ol A la solution contenant le 11-bromo- magnésium-1-undécène refroidie à -78°C, 0,21g (1,1 mmoles) d' iodure de cuivre est additionné. La solution contenant le dérivé lithien y est ajoutée goutte à goutte par l'intermédiaire d'une canule. Le mélange est agité pendant une heure à cette température, puis 15 heures à température ambiante. La réaction est arrêtée par addition de 40 ml d'éthanol absolu ; un précipité noir se forme. Ce dernier est accentué par l'ajout de 3 ml d'HCl 10%. Après filtration sur fritte 1, la solution limpide obtenue est extraite trois fois à l'aide de diéthyl-éther . La phase éthérée restante est alors lavée à l'eau puis avec une solution saturée en NaHCθ3. La phase organique est alors récupérée, séchée sur MgSO4 puis concentrée par évaporation des solvants sous pression réduite. Le résidu restant est finalement reprécipité dans l'acétone anhydre. Après filtration sur fritte 4, 4,86g (rdt = 70%) de docos-21-èn-l-ol sont obtenus.Step 3: Formation of docos-21-en-ol To the solution containing 11-bromomagnesium-1-undecene cooled to -78 ° C, 0.21 g (1.1 mmol) of copper iodide is added. The solution containing the lithian derivative is added dropwise through a cannula. The mixture is stirred for one hour at this temperature, then 15 hours at room temperature. The reaction is stopped by the addition of 40 ml of absolute ethanol; a black precipitate is formed. The latter is accentuated by the addition of 3 ml of 10% HCl. After filtration on frit 1, the clear solution obtained is extracted three times with diethyl ether. The remaining ethereal phase is then washed with water and then with a saturated solution of NaHCO 3. The organic phase is then recovered, dried over MgSO 4 and then concentrated by evaporation of the solvents under reduced pressure. The remaining residue is finally reprecipitated in anhydrous acetone. After filtration on frit 4, 4.86 g (yield = 70%) of docos-21-en-1-ol are obtained.
ii. Acétate de docos-21-ènyle . L'extrémité OH du docos-21-èn-l-ol est ensuite acétylée par l'anhydride acétique dans du dichlorométhane pour conduire à l'acétate de docos-21- ènyle de formule :ii. Docos-21-enyl acetate. The OH end of docos-21-en-1-ol is then acetylated with acetic anhydride in dichloromethane to yield docos-21-enyl acetate of formula:
C24H46O2 MM = 366,63 g. mol"1 C 24 H 46 O 2 MW = 366.63 g. mol "1
A 2g (6 mmoles) de docos-21-èn-l-ol sont ajoutés 20 ml de pyridine anhydre. Après quelques minutes d'agitation, la solution est refroidie par un bain de glace et 0,7 ml (7,2 mmoles) d'anhydride acétique est ajouté. Après retour à température ambiante, la solution est agitée pendant 12 heures. La pyridine est alors co-évaporée à l'aide de toluène anhydre, puis le résidu est noyé dans 30 ml de dichlorométhane. Cette solution est lavée 3 fois à l'aide d'une solution aqueuse saturée en hydrocarbonate de sodium. Les phases organiques sont rassemblées après séchage sur MgSO4, les solvants sont évaporés sous pression réduite. Une poudre blanche est récupérée. Après purification par chromatographie sur colonne de gel de silice avec comme éluant un mélange dichlorométhane / méthanol (98/2, v/v) , 1,34g (rdt = 62%) d'acétate de docos-21-ènyle ci-après désigné composé organique A sont récupérés sous forme d'une huile translucide qui durcit et blanchit à température ambiante .2 g (6 mmol) of docos-21-en-1-ol are added 20 ml of anhydrous pyridine. After stirring for a few minutes, the solution is cooled with an ice bath and 0.7 ml (7.2 mmol) of acetic anhydride is added. After returning to ambient temperature, the solution is stirred for 12 hours. The pyridine is then co-evaporated with anhydrous toluene and the residue is then immersed in 30 ml of dichloromethane. This solution is washed 3 times with a saturated aqueous solution of sodium hydrogencarbonate. The organic phases are combined after drying over MgSO 4 , the solvents are evaporated under reduced pressure. A white powder is recovered. After purification by column chromatography on silica gel using a dichloromethane / methanol mixture (98/2, v / v) as eluent, 1.34 g (62%) of docos-21-enyl acetate, hereinafter designated organic compound A are recovered as a translucent oil that hardens and whitens at room temperature.
b. Synthèse du 1-O-acétyl-lO-O- [l-docos-21- ényl] triéthylèneglycol . i. Tosylate de docos-21-ène .b. Synthesis of 1-O-acetyl-10-O- [1-docos-21-enyl] triethylene glycol. i. Tosylate of docos-21-ene.
L' activation de l'extrémité hydroxyle du docos-21-èn-l-ol, par action de chlorure de tosyle en présence de triéthylamine dans le dichlorométhane à température ambiante a permis d'obtenir du tosylate de docos-21-ène de formule :Activation of the hydroxyl end of docos-21-en-1-ol by the action of tosyl chloride in the presence of triethylamine in dichloromethane at room temperature made it possible to obtain docos-21-enol tosylate of formula :
C29H50O3S MM = 478, 77 g. mol -1C 29 H 50 O 3 MS = 478.77 g. mol -1
A une solution de 4g (12 mmoles) de docos-To a solution of 4 g (12 mmol) of docos-
21-èn-l-ol dans 4 ml de triéthylamine anhydre et 30 ml de dichlorométhane anhydre, sont ajoutés, sous azote et à température ambiante, 4,6g (24 mmoles) de chlorure de tosylate lui-même dilué dans 30 ml de dichlorométhane. Le mélange jaunâtre est agité pendant 12 heures. Après filtration sur fritte 4 et évaporation des solvants sous pression réduite, le résidu est purifié par chromatographie sur colonne de gel de silice avec comme éluant le dichlorométhane à 100%. 3,4g (rdt = 60%) de tosylate de docos-21-ène sont récupérés.21 g of 1-ol in 4 ml of anhydrous triethylamine and 30 ml of anhydrous dichloromethane are added, under nitrogen and at room temperature, 4.6 g (24 mmol) of tosylate chloride, which is itself diluted in 30 ml of dichloromethane. . The yellowish mixture is stirred for 12 hours. After filtration on frit 4 and evaporation of the solvents under reduced pressure, the residue is purified by column chromatography on silica gel with 100% dichloromethane as eluent. 3.4 g (yield = 60%) of docos-21-enosylate are recovered.
ii . 2- (2- (2- (docos-21-enyloxy) ethoxy) ethoxy) ethanol .ii. 2- (2- (2- (docos-21-enyloxy) ethoxy) ethoxy) ethanol.
A 1,9g (12,6 mmoles) de triéthylène glycol en solution dans 30 ml de THF anhydre sont additionnés 83mg (2,1 mmoles) d'hydrure de sodium à 60% dans l'huile. Après 15 minutes d'agitation sous azote, Ig (2,1 mmoles) du composé 6 en solution dans 40 ml de THF est ajouté goutte à goutte. Le mélange est alors porté au reflux du THF pendant 12 heures. Après retour à température ambiante, la solution est filtrée sur fritte 4, les solvants sont évaporés et le résidu est purifié par chromatographie sur colonne de gel de silice avec comme éluant un mélange dichlorométhane / méthanol (98/2, v/v) . Est récupéré 0,64g (rdt = 67%) de 2- (2- (2- (docos-21-enyloxy) ethoxy) ethoxy) ethanol de formule : 1.9 g (12.6 mmol) of triethylene glycol dissolved in 30 ml of anhydrous THF are added 83 mg (2.1 mmol) of 60% sodium hydride in the oil. After stirring for 15 minutes under nitrogen, Ig (2.1 mmol) of compound 6 dissolved in 40 ml of THF is added drop by drop. The mixture is then refluxed with THF for 12 hours. After returning to ambient temperature, the solution is filtered on frit 4, the solvents are evaporated and the residue is purified by column chromatography on silica gel with dichloromethane / methanol (98/2, v / v) as eluent. 0.64 g (yield = 67%) of 2- (2- (2- (docos-21-enyloxy) ethoxy) ethoxy) ethanol of formula:
C28H56O4 MM = 456,75 g. mol"1 C 28 H 56 O 4 MW = 456.75 g. mol "1
iii . 2- (2- (2- (docos-21-enyloxy) ethoxy) ethoxy) ethyl acétate Dans une solution de 20 ml de dichlorométhane est dissous 0,5g (1 mmole) de 2- (2- (2- (docos-21-enyloxy) ethoxy) ethoxy) ethanol, puis 0,26 ml (2,7 mmoles) d'anhydride acétique est ajouté. La solution est agitée sous azote pendant une heure puis au reflux du dichlorométhane pendant 12 heures. Après retour à température ambiante, la solution est extraite 3 fois à l'aide 50 ml de dichlorométhane. La phase organique est ensuite lavée 3 fois à l'aide d'une solution aqueuse saturée en hydrocarbonate de sodium. Après séchage sur MgSO4 et évaporation des solvants sous pression réduite de la phase organique, une pâte jaunâtre est récupérée. Après purification par chromatographie sur colonne de gel de silice avec comme éluant un mélange dichlorométhane / méthanol (98/2, v/v) , est récupéré 0,45g (rdt = 90%) de l-O-acétyl-10- O- [l-docos-21-ényl] Triéthylèneglycol (ou acétate de 2- [2- (2-docos-21-ényloxy-éthoxy) -éthoxy] -éthyle) ci-après désigné composé organique B de formule :iii. 2- (2- (2- (docos-21-enyloxy) ethoxy) ethoxy) ethyl acetate In a solution of 20 ml of dichloromethane is dissolved 0.5 g (1 mmol) of 2- (2- (2- 21-enyloxy) ethoxy) ethoxy) ethanol, then 0.26 ml (2.7 mmol) of acetic anhydride is added. The solution is stirred under nitrogen for one hour and then at reflux of dichloromethane for 12 hours. After returning to ambient temperature, the solution is extracted 3 times with 50 ml of dichloromethane. The organic phase is then washed 3 times with a saturated aqueous solution of sodium hydrogencarbonate. After drying over MgSO 4 and evaporation of the solvents under reduced pressure of the organic phase, a yellowish paste is recovered. After purification by column chromatography on silica gel with a dichloromethane / methanol (98/2, v / v) is recovered 0.45 g (yield = 90%) of 10-acetyl-10-O- [1-docos-21-enyl] triethylene glycol (or 2- [2- (2-docos-21) acetate). -ényloxy-ethoxy) -ethoxy] -ethyl) hereinafter designated organic compound B of formula:
CsoHsgOs MM = 498, 79 g. mol -1C 50 H 50 M = 498.79 g. mol -1
c. Hydrosilylation des composés organiques A et B. Les composés organiques A et B possèdent à l'une de leurs extrémités une insaturation. Cette double liaison a été fonctionnalisée à l'aide de chlorosilane pour fixer dans un deuxième temps ces bras au support de verre. Cette hydrosilylation a été effectuée par réaction du trichlorosilane sur A et B dans du toluène en présence du catalyseur de Kàrsted.vs. Hydrosilylation of organic compounds A and B. The organic compounds A and B have at one of their ends an unsaturation. This double bond was functionalized with chlorosilane to fix in a second time these arms to the glass support. This hydrosilylation was carried out by reacting trichlorosilane on A and B in toluene in the presence of Kartsted catalyst.
Le composé organique A (200mg (0,5 mmole) ) est placé dans un tube de Schenck ayant été préalablement purgé par commutation alternative entre une rampe à vide et une rampe argon. Après addition de 2 ml de toluène fraîchement distillé, la solution est soumise à une agitation, sous argon, jusqu'à complète dissolution du solide. Puis 300μl de trichlorosilane fraîchement distillé sont ajoutés ainsi que 2 gouttes du catalyseur de Kàrsted. La solution devenue jaune pâle est agitée 2 heures à 400C. Après évaporation sous pression réduite, un solide brut est obtenu puis est utilisé dans l'état dans l'étape de greffage. Ce solide correspond à l'acétate de 22- (trichlorosilanyl) - docosyle ci-après désigné composé organique C de formule :The organic compound A (200 mg (0.5 mmol)) is placed in a Schenck tube having been previously purged by alternating switching between a vacuum ramp and an argon ramp. After addition of 2 ml of freshly distilled toluene, the solution is stirred under argon until complete dissolution of the solid. Then 300 μl of freshly distilled trichlorosilane are added as well as 2 drops of Krsted catalyst. The solution turned pale yellow is stirred for 2 hours at 40 ° C. After evaporation under reduced pressure, a crude solid is obtained and is then used in the state in the grafting step. This solid corresponds to 22- (trichlorosilanyl) -docosyl acetate hereinafter referred to as organic compound C of formula:
C24H47Cl3O2Si 502,08 g. mol -1C 24 H 47 Cl 3 O 2 Si 502.08 g. mol -1
A partir du composé organique B et dans les mêmes conditions opératoires, est obtenu le composé organique D correspondant au 1-O-Acétyl-lO-O- [22-From the organic compound B and under the same operating conditions is obtained the organic compound D corresponding to 1-O-acetyl-10-O- [22-
(trichlorosilanyl) -docosyl] triéthylèneglycol de formule :(trichlorosilanyl) -docosyl] triethylene glycol of formula:
C30H59Cl3O5Si 634,24 g. mol -1C 30 H 59 Cl 3 O 5 Si 634.24 g. mol -1
d. Greffage des composés organiques sur le support verre.d. Grafting organic compounds onto the glass support.
Après avoir validé le greffage exclusif du composé C puis celui du composé D, a été entrepris le greffage en mélangeant les deux types de composés et en utilisant un mélange équimolaire dans le but d'obtenir une surface présentant une densité moyenne de sites actifs vis-à-vis du peptide. Ainsi, après nettoyage, les matériaux en verre sont introduits dans un réacteur. Cette enceinte permet de sécher le matériau à une température contrôlée en évitant toute contamination organique postérieure au nettoyage ; celle-ci est fréquemment rencontrée lors des séchages en étuve. Ce type de réacteur à double enveloppe sera également utilisé pour réaliser l'étape de silanisation qui doit se dérouler sous atmosphère inerte et à température fixe. Ceci est possible à l'aide d'un système externe de refroidissement avec régulateur thermique.After having validated the exclusive grafting of compound C and that of compound D, the grafting was carried out by mixing the two types of compounds and using an equimolar mixture in order to obtain a surface having an average density of active sites vis- with respect to the peptide. Thus, after cleaning, the glass materials are introduced into a reactor. This enclosure makes it possible to dry the material at a controlled temperature while avoiding any organic contamination after the cleaning; this is frequently encountered during drying in an oven. This type of jacketed reactor will also be used to carry out the silanization step which must take place under an inert atmosphere and at a fixed temperature. This is possible using an external cooling system with thermal controller.
Les composés chlorosilylés C et D (concentration finale de chaque composé 6.10"3 M) sont solubilisés dans le mélange hexane/chloroforme, 90/10. Cette solution dite de "silanisation" est alors introduite dans le réacteur où se trouvent les matériaux. Le schéma 1 ci-après présente la réaction de greffage sur verre du composé C.The chlorosilyl compounds C and D (final concentration of each compound 6.10 "3 M) are solubilized in the mixture hexane / chloroform, 90 / 10. This so-called" silanization "solution is then introduced into the reactor where the materials are located. Scheme 1 below shows the glass grafting reaction of the compound C.
Après une nuit d'immersion, les matériaux sont retirés de l'enceinte et plongés dans un bain d'eau osmosée soumis à des ultrasons sur une durée de cinq minutes. Ce type de traitement permet d'éliminer les composés organosiliciés seulement adsorbés sur le support sans fragiliser la couche greffée.After a night of immersion, the materials are removed from the chamber and immersed in an osmosis water bath subjected to ultrasound over a period of five minutes. This type of treatment makes it possible to eliminate the organosilicon compounds only adsorbed on the support without weakening the grafted layer.
L'étape suivante est la déprotection de la fonction OH par saponification des composés C et D fixés sur support en utilisant la potasse alcoolique à 0,5 M. Les matériaux sont immergés dans cette solution de KOH pendant 20 minutes. Les supports sont ensuite retirés et les impuretés sont éliminées par 3 traitements successifs de 3 minutes par ultrasons dans un bain d'eau osmosée. Les matériaux sont alors séchés sur papier adsorbant. Le schéma 2 ci-après correspond à la réaction de déprotection de la fonction ester après greffage du composé C.The next step is the deprotection of the OH function by saponification of the compounds C and D mounted on support using 0.5M alcoholic potassium hydroxide. The materials are immersed in this KOH solution for 20 minutes. The supports are then removed and the impurities are removed by 3 successive treatments of 3 minutes by ultrasound in an osmosis water bath. The materials are then dried on adsorbent paper. Scheme 2 below corresponds to the deprotection reaction of the ester function after grafting of compound C.
Schéma 2Figure 2
De plus, en présence d'un greffage hétérogène, KOH pénètre au sein de la couche greffée, et rompt les liaisons liant les bras organosiliciés à la surface. Dans le cas d'un greffage homogène, les molécules de cette base forte ne trouvent pas d'espace entre les molécules greffées pour atteindre la surface. Le greffage du matériau inorganique restera donc intact. L'utilisation de potasse alcoolique permet donc aussi de tester l'homogénéité du greffage.In addition, in the presence of a heterogeneous grafting, KOH penetrates into the graft layer, and breaks the bonds binding the organosilicon arms to the surface. In the case of a homogeneous grafting, the molecules of this strong base do not find any space between the grafted molecules to reach the surface. The grafting of the inorganic material will therefore remain intact. The use of alcoholic potash thus also makes it possible to test the homogeneity of the grafting.
Afin de valider le greffage des composés C et D, ont, tout d'abord, été observées les variations d' hydrophobie / hydrophilie de la surface par l'étude de l'angle de contact d'une goutte d'eau avant, après réaction de silanisation et après saponification. Les résultats de cette analyse de la mouillabilité sont présentés au Tableau 1. In order to validate the grafting of compounds C and D, the variations of hydrophobicity / hydrophilicity of the surface were first observed by studying the contact angle of a drop of water before, after silanization reaction and after saponification. The results of this wettability analysis are presented in Table 1.
Tableau 1Table 1
Une forte augmentation de l'angle de contact après le greffage (verre brut versus verre traité) est obtenue, ce qui confirme la présence d'une couche aliphatique hydrophobe apparue en surface. De plus, après traitement à la potasse alcoolique, la baisse de cet angle validant le passage à une surface rendue plus hydrophile après élimination de la fonction ester. Ce type d'analyse est donc un bon indicateur de la variation de l'état de surface.A sharp increase in the contact angle after grafting (raw glass versus treated glass) is obtained, which confirms the presence of a hydrophobic aliphatic layer appeared on the surface. In addition, after treatment with alcoholic potash, the decline of this angle validating the passage to a surface made more hydrophilic after removal of the ester function. This type of analysis is therefore a good indicator of the change in surface condition.
Cependant afin d' obtenir des informations plus précises sur les éléments greffés, une analyse par Infra-Rouge en transmission a été réalisée afin de caractériser le nombre d'onde correspondant aux groupements CH2 des chaînes aliphatiques des composés C et D greffés. Les spectres obtenus sont présentés sur la Figure 2.However, in order to obtain more precise information on the grafted elements, a transmission infrared analysis was carried out in order to characterize the wave number corresponding to the CH 2 groups of the aliphatic chains of the compounds C and D grafted. The spectra obtained are shown in FIG.
L'analyse confirme la présence en surface de la longue chaîne aliphatique par l'observation des bandes caractéristiques des liaisons CH2 (Vas = 2923cm"1, Vs = 2853cm"1) De plus, l'intensité des bandes obtenues ici (ΔDO = 3.10"3) est comparable à la simulation effectuée d'une monocouche d'arachidate sur verre (ΔDO = 2,5.10~3). Ceci semble donc bien indiquer la formation en surface du support d'une monocouche des composés C et D. La couche greffée est suffisamment compacte et dense pour empêcher la pénétration de la potasse alcoolique au sein de la couche.The analysis confirms the presence on the surface of the long aliphatic chain by the observation of the characteristic bands of the CH 2 bonds (V as = 2923 cm -1 , V s = 2853 cm -1 ). Moreover, the intensity of the bands obtained here (ΔDO = 3.10 "3) is comparable to the simulation performed with a monolayer of glass arachidate (ΔDO = 2.5x10 -3). This therefore seems to indicate the formation surface of the support of a monolayer compounds C and D. The grafted layer is sufficiently compact and dense to prevent the penetration of the alcoholic potash within the layer.
Sur la Figure 3, on observe également un décalage du spectre après traitement à la potasse alcoolique vers les basses fréquences. Ainsi, il semble que la présence du groupe ester avant saponification ne permet pas aux chaînes de s'orienter les unes par rapport aux autres. Après traitement à la potasse alcoolique, la disparition de cet ester terminal entraîne une réorganisation des chaînes à l'intérieur de la couche.In Figure 3, there is also a spectrum shift after treatment with alcoholic potash at low frequencies. Thus, it appears that the presence of the ester group before saponification does not allow the chains to orient themselves relative to each other. After treatment with alcoholic potash, the disappearance of this terminal ester causes a reorganization of the chains within the layer.
Le support verre a donc été fonctionnalisé par les deux types de composés C et D de façon à obtenir une surface fonctionnelle à faible densité de sites actifs.The glass support was thus functionalized by the two types of compounds C and D so as to obtain a functional surface with a low density of active sites.
II.3. Fixation du peptide 1.II.3. Fixation of the peptide 1.
Chaque support fonctionnalisé est placé dans un pilulier à large col, dans lequel se déroule le greffage. Un micro barreau aimanté est ajouté afin d'assurer l'agitation. Ces piluliers sont eux-mêmes placés dans le réacteur qui est ensuite fermé puis purgé par commutation alternative entre une rampe à vide et une rampe argon. Les supports se trouvent donc sous atmosphère inerte. Sont ajoutés 8 ml de solvant de greffage à chaque pilulier situé dans le réacteur et l'agitation est lancée.Each functionalized support is placed in a pillbox with a wide neck, in which the grafting takes place. A micro bar magnet is added to ensure agitation. These pill containers are themselves placed in the reactor which is then closed and then purged by alternating switching between a vacuum ramp and an argon ramp. The supports are therefore in an inert atmosphere. 8 ml of grafting solvent are added to each pill in the reactor and stirring is started.
Puis est ajoutée au matériau la solution dite d' activation comportant, par unité de support, 2 mmol de HOBt et 2 mmol d' iodure de [3-(N- éthylcarbodiimide) -N-propyl] triéthylammonium (DiPC) mis en solution, sous atmosphère inerte, dans 1 ml de solvant de greffage (eau osmosée à 9 g/1 de NaCl) . La solution peptidique (par support, 1 mmol de peptide 1 mis en solution sous argon dans 1 ml de solvant de greffage) est ajoutée, goutte à goutte, très lentement, sous agitation, au support préalablement immergé dans la solution d' activation . La réaction suit toujours le protocole réactionnel présenté sur la Figure 3.Then added to the material is the so-called activation solution comprising, per unit of support, 2 mmol of HOBt and 2 mmol of [3- (N-ethylcarbodiimide) -N-propyl] triethylammonium iodide (DiPC) dissolved in solution, under an inert atmosphere, in 1 ml of grafting solvent (osmosis water at 9 g / l NaCl). The peptide solution (by support, 1 mmol of peptide 1 dissolved in argon in 1 ml of grafting solvent) is added, dropwise, very slowly, with stirring, to the support previously immersed in the activation solution. The reaction always follows the reaction protocol shown in Figure 3.
L'agitation est maintenue 30 minutes puis arrêtée. Les supports restent immergés pendant 20 heures. Les matériaux sont ensuite retirés des piluliers et les molécules non fixées de façon covalente sont éliminées par ultrasons, par traitements successifs de 2 minutes dans de l'eau osmosée puis sont analysées comme précédemment. Le spectre obtenu est présenté sur la Figure 4. L'observation du spectre met en évidence les bandes caractéristiques de l'amide I (v∞) et 1 ' amide II (combinaison entre la VCN et la δ NH) . Ceci laisse envisager la présence du peptide 1 en surface des plaques. Les plaques de verre obtenues lors des différentes expériences ont été analysées par Infra- Rouge en mode Réflexion spéculaire et les spectres obtenus sont présentés Figure 5.Stirring is maintained for 30 minutes and then stopped. The supports remain immersed for 20 hours. The materials are then removed from the pill containers and the molecules not fixed covalently are removed by ultrasound, by successive treatments of 2 minutes in osmosis water and are analyzed as above. The spectrum obtained is shown in FIG. 4. The observation of the spectrum shows the characteristic bands of the amide I (v ∞ ) and the amide II (combination between the V CN and the δ NH ). This suggests the presence of peptide 1 at the surface of the plates. The glass plates obtained during the various experiments were analyzed by Infra- Red in specular reflection mode and the spectra obtained are shown in Figure 5.
Ainsi l'analyse de ces spectres révèle la présence de peptides seulement sur les plaques préalablement greffées par les composés C et D. Ceci confirmerait l'hypothèse d'un greffage covalent et non d'une simple absorption. Ainsi, les supports fonctionnels réalisés permettent la fixation de façon covalente de peptides d'intérêt biologique.Thus the analysis of these spectra reveals the presence of peptides only on the plates previously grafted by the compounds C and D. This would confirm the hypothesis of a covalent grafting and not a simple absorption. Thus, the functional supports made allow the covalent attachment of peptides of biological interest.
II.4. Fixation du peptide 2.II.4. Fixation of the peptide 2.
Le peptide 2 synthétisé selon la méthode décrite précédemment a été fixé en utilisant le même protocole que celui pour le peptide 1. Seule l'eau osmosée à 9 g.l'1 de NaCl présente dans les solvants de greffage et d' activation a été remplacée par de 1 ' hexafluoropropan-2-ol qui permet de solubiliser les peptides hydrophobes.The peptide 2 synthesized according to the method described above was fixed using the same protocol as that for peptide 1. Only the osmosis water with 9 g / l NaCl present in the grafting and activation solvents was replaced by hexafluoropropan-2-ol which makes it possible to solubilize the hydrophobic peptides.
Les supports verre ainsi obtenus sont analysés par Infra-Rouge en mode réflexion spéculaire par la méthode P .M. I .R. R. A. S . (Figure 6). Les bandes caractéristiques des amides I et II confirment que le peptide 2 a bien été greffé selon le protocole décrit sur support verre.The glass supports thus obtained are analyzed by Infra-Red in specular reflection mode by the P.M. method. I .R. R. A. S. (Figure 6). The characteristic bands of the amides I and II confirm that the peptide 2 has been grafted according to the protocol described on a glass support.
III . Vérification des propriétés biologiques des peptides fixés.III. Verification of the biological properties of the fixed peptides.
Des tests ELISA ont été réalisés afin de vérifier les propriétés biologiques et notamment l'accessibilité de l'épitope et la reconnaissance spécifique d'anticorps pour les peptides fixés. Ces tests ont notamment été réalisés pour le peptide 1 spécifiquement reconnu par l'anticorps DB4 en utilisant comme contrôle négatif un anticorps appeléELISA tests were carried out in order to verify the biological properties and in particular the accessibility of the epitope and the specific recognition of antibodies for the fixed peptides. These tests were carried out in particular for the peptide 1 specifically recognized by the antibody DB4, using as negative control an antibody called
BF6, dirigé contre une protéine du système du complément humain et ne reconnaissant pas le peptide 1.BF6, directed against a human complement system protein and not recognizing peptide 1.
De plus, l'interaction antigène-anticorps dans le cas du peptide 1 et de l'anticorps DB4 a été observée par spectrométrie Infra-Rouge en transmission.In addition, the antigen-antibody interaction in the case of peptide 1 and the DB4 antibody has been observed by infrared transmission spectrometry.
IV. Association d' érythrocytes au support.IV. Association of erythrocytes in support.
A été utilisé du sang obtenu auprès de l'Etablissement Français du Sang et correspondant à un culot d'hématies conservé en tampon C. P. D. (Citrate Phosphate Dextrose) . 1 ml de ce sang est prélevé, mis en solution dans 15 ml de tampon PBS IX puis centrifugé 5 min à 2500 tours/min. Le culot récupéré est ensuite remis en suspension dans ce même tampon. Cette opération, renouvelée trois fois, permet l'élimination d'une grande proportion des protéines plasmatiques et ce, afin de favoriser l'immobilisation cellulaire.Blood obtained from the French Blood Establishment was used, corresponding to a red blood cell pellet preserved in C.P. (Citrate Phosphate Dextrose) buffer. 1 ml of this blood is removed, dissolved in 15 ml of 1 × PBS buffer and then centrifuged for 5 min at 2500 rpm. The pellet recovered is then resuspended in this same buffer. This operation, repeated three times, allows the elimination of a large proportion of plasma proteins and this to promote cell immobilization.
Différents supports en verre placés dans les puits d'une plaque 6 puits ont été ensuite immergés dans une solution d' érythrocytes à 1% dans du tampon PBS pendant 1 heure 30 sous faible agitation. Les supports sont ensuite tenus par une pince pour être agités dans 3 bains successifs de tampon PBS.Different glass supports placed in the wells of a 6-well plate were then immersed in a 1% erythrocyte solution in PBS buffer for 1 hour with gentle agitation. The supports are then held by a clamp to be stirred in 3 successive baths of PBS buffer.
Les supports en verre ainsi rincés sont conservés dans du PBS, avant d'être placés entre lame et lamelle et être observés sous microscope photonique NIKON optiphot 2 (Biocom visiol@b) . Les clichés obtenus (x 650 objectif 50) sont présentés sur la Figure 7.The rinsed glass supports are preserved in PBS, before being placed between slide and coverslip and be observed under a light microscope NIKON optiphot 2 (Biocom visiol @ b). The snapshots obtained (x 650 objective 50) are shown in Figure 7.
Cette expérience a été réalisée sur : Verre après traitement à l'aide d'une solution HellmanexThis experiment was carried out on: Glass after treatment using a Hellmanex solution
Verre fonctionnalisé par les composés organiques C et D ,Functionalized glass with organic compounds C and D,
Verre fonctionnalisé par les composés organiques C et D puis par le peptide 1 (Figure 7A) , - Verre fonctionnalisé par les composés organiques C et D puis par le peptide 2 (Figure 7B) .Glass functionalized with organic compounds C and D then with peptide 1 (FIG. 7A). Glass functionalized with organic compounds C and D followed by peptide 2 (FIG. 7B).
Aucune hématie n'est présente sur les supports verre après traitement à l'aide d'une solution Hellmanex et verre fonctionnalisé par les composés organiques C et D. De plus, aucune hématie n'est observée sur le cliché qui correspond au support sans peptide 2 fusogène (Figure 7A) . Les érythrocytes ne présentent donc pas d'adsorption aspécifique sur le verre, les composés organiques ou le peptide 1. Par contre, le cliché effectué sur un support comportant le peptide 2 fusogène (Figure 7B) présente une forte proportion d'hématies régulièrement réparties sur la plaque. La Figure 8 schématise le biorécepteur tel que visualisé à la Figure 7B.No red blood cells are present on the glass supports after treatment using a Hellmanex solution and glass functionalized with organic compounds C and D. Furthermore, no red blood cells are observed on the plate which corresponds to the support without peptide. 2 fusogenic (Figure 7A). The erythrocytes thus do not exhibit aspecific adsorption on glass, organic compounds or peptide 1. On the other hand, the cliché carried out on a support comprising the fusogenic peptide 2 (FIG. 7B) has a high proportion of erythrocytes regularly distributed over the plaque. Figure 8 schematizes the bioreceptor as viewed in Figure 7B.
Ainsi, le peptide 2 fusogène a pu immobiliser les globules rouges sur le support verre. De plus, les hématies n'ont pas subi de dommages et ont conservé les formes normales de disque biconcave. II convient de remarquer que des résultats tout à fait similaires à ceux précédemment présentés ont été obtenus en utilisant un support en silicium oxydé au lieu d'un support en verre. En effet, des expériences identiques à celles précédemment décrites pour le verre ont été réalisées sur des supports de silicium oxydé et les résultats obtenus en microscopie à balayage sont présentés à la Figure 9. Aucune hématie n'est présente sur les plaques sans peptide 2 fusogène i.e. aucune adsorption aspécifique de ces cellules sur le silicium (Figure 9A), les agents de jonction C et DThus, the fusogenic peptide 2 was able to immobilize the red blood cells on the glass support. In addition, red blood cells were not damaged and retained normal biconcave disk forms. It should be noted that results quite similar to those previously presented were obtained using an oxidized silicon support instead of a glass support. Indeed, identical experiments to those previously described for the glass were carried out on oxidized silicon supports and the results obtained by scanning microscopy are presented in FIG. 9. No red blood cells are present on the plates without fusogenic peptide 2. ie no aspecific adsorption of these cells on silicon (FIG. 9A), coupling agents C and D
(Figure 9B) ou le peptide 1 (Figure 9C) . (Figure 9B) or peptide 1 (Figure 9C).
Claims
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| FR0754424A FR2914928B1 (en) | 2007-04-12 | 2007-04-12 | PROCESS FOR PREPARING A CARRIER FOR IMMOBILIZATION OF A CELL, SUCH A CARRIER AND USES THEREOF |
| PCT/EP2008/054442 WO2008125637A1 (en) | 2007-04-12 | 2008-04-11 | Method for preparing a substrate for immobilising a cell, said substrate and uses thereof |
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| EP2139999A1 true EP2139999A1 (en) | 2010-01-06 |
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| EP08736151A Withdrawn EP2139999A1 (en) | 2007-04-12 | 2008-04-11 | Method for preparing a substrate for immobilising a cell, said substrate and uses thereof |
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| Country | Link |
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| US (1) | US20110256552A1 (en) |
| EP (1) | EP2139999A1 (en) |
| CA (1) | CA2684015A1 (en) |
| FR (1) | FR2914928B1 (en) |
| WO (1) | WO2008125637A1 (en) |
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| FR2932189A1 (en) * | 2008-06-10 | 2009-12-11 | Commissariat Energie Atomique | BIOPUCES FOR THE DETECTION OF THE ENZYMATIC ACTIVITY OF AN ENZYME PROTEASE |
| JP7249579B2 (en) * | 2019-02-20 | 2023-03-31 | 日本電信電話株式会社 | Cell adhesion substrate and manufacturing method thereof |
| WO2022033453A1 (en) * | 2020-08-12 | 2022-02-17 | 深圳市真迈生物科技有限公司 | Amino-modified chip, preparation method therefor and use thereof |
| WO2024143404A1 (en) * | 2022-12-26 | 2024-07-04 | ダイキン工業株式会社 | Alkylene chain-containing silane compound |
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| FR2767323B1 (en) * | 1997-08-12 | 2001-01-05 | Synt Em | LINEAR PEPTIDES DERIVED FROM ANTIBIOTIC PEPTIDES, THEIR PREPARATION AND THEIR USE FOR VECTORIZING ACTIVE SUBSTANCES |
| FR2804129B1 (en) * | 2000-01-20 | 2002-10-18 | Centre Nat Rech Scient | METHODS FOR SYNTHESIS AND IMMOBILIZATION OF NUCLEIC ACIDS ON A SOLID SILANIZED SUPPORT |
| US7501280B2 (en) * | 2002-03-01 | 2009-03-10 | National Institute Of Advanced Industrial Science And Technology | Immobilized cells and liposomes and method of immobilizing the same |
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2008
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- 2008-04-11 US US12/450,741 patent/US20110256552A1/en not_active Abandoned
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| CA2684015A1 (en) | 2008-10-23 |
| FR2914928A1 (en) | 2008-10-17 |
| FR2914928B1 (en) | 2009-07-10 |
| WO2008125637A1 (en) | 2008-10-23 |
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