CN107754951A - A kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate - Google Patents

A kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate Download PDF

Info

Publication number
CN107754951A
CN107754951A CN201610791717.1A CN201610791717A CN107754951A CN 107754951 A CN107754951 A CN 107754951A CN 201610791717 A CN201610791717 A CN 201610791717A CN 107754951 A CN107754951 A CN 107754951A
Authority
CN
China
Prior art keywords
pipeline
micro
terminal
swine flu
hypotype swine
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.)
Pending
Application number
CN201610791717.1A
Other languages
Chinese (zh)
Inventor
葛宇杰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CN201610791717.1A priority Critical patent/CN107754951A/en
Publication of CN107754951A publication Critical patent/CN107754951A/en
Pending legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L3/00Containers or dishes for laboratory use, e.g. laboratory glassware; Droppers
    • B01L3/50Containers for the purpose of retaining a material to be analysed, e.g. test tubes
    • B01L3/502Containers for the purpose of retaining a material to be analysed, e.g. test tubes with fluid transport, e.g. in multi-compartment structures
    • B01L3/5027Containers for the purpose of retaining a material to be analysed, e.g. test tubes with fluid transport, e.g. in multi-compartment structures by integrated microfluidic structures, i.e. dimensions of channels and chambers are such that surface tension forces are important, e.g. lab-on-a-chip
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L3/00Containers or dishes for laboratory use, e.g. laboratory glassware; Droppers
    • B01L3/50Containers for the purpose of retaining a material to be analysed, e.g. test tubes
    • B01L3/502Containers for the purpose of retaining a material to be analysed, e.g. test tubes with fluid transport, e.g. in multi-compartment structures
    • B01L3/5027Containers for the purpose of retaining a material to be analysed, e.g. test tubes with fluid transport, e.g. in multi-compartment structures by integrated microfluidic structures, i.e. dimensions of channels and chambers are such that surface tension forces are important, e.g. lab-on-a-chip
    • B01L3/50273Containers for the purpose of retaining a material to be analysed, e.g. test tubes with fluid transport, e.g. in multi-compartment structures by integrated microfluidic structures, i.e. dimensions of channels and chambers are such that surface tension forces are important, e.g. lab-on-a-chip characterised by the means or forces applied to move the fluids
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N33/00Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
    • G01N33/48Biological material, e.g. blood, urine; Haemocytometers
    • G01N33/50Chemical analysis of biological material, e.g. blood, urine; Testing involving biospecific ligand binding methods; Immunological testing
    • G01N33/53Immunoassay; Biospecific binding assay; Materials therefor
    • G01N33/569Immunoassay; Biospecific binding assay; Materials therefor for microorganisms, e.g. protozoa, bacteria, viruses
    • G01N33/56983Viruses
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2200/00Solutions for specific problems relating to chemical or physical laboratory apparatus
    • B01L2200/02Adapting objects or devices to another
    • B01L2200/026Fluid interfacing between devices or objects, e.g. connectors, inlet details
    • B01L2200/027Fluid interfacing between devices or objects, e.g. connectors, inlet details for microfluidic devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2200/00Solutions for specific problems relating to chemical or physical laboratory apparatus
    • B01L2200/10Integrating sample preparation and analysis in single entity, e.g. lab-on-a-chip concept
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2300/00Additional constructional details
    • B01L2300/06Auxiliary integrated devices, integrated components
    • B01L2300/0609Holders integrated in container to position an object
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2300/00Additional constructional details
    • B01L2300/06Auxiliary integrated devices, integrated components
    • B01L2300/0627Sensor or part of a sensor is integrated
    • B01L2300/0645Electrodes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2300/00Additional constructional details
    • B01L2300/08Geometry, shape and general structure
    • B01L2300/0832Geometry, shape and general structure cylindrical, tube shaped
    • B01L2300/0838Capillaries
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2300/00Additional constructional details
    • B01L2300/08Geometry, shape and general structure
    • B01L2300/0861Configuration of multiple channels and/or chambers in a single devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2300/00Additional constructional details
    • B01L2300/12Specific details about materials
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2300/00Additional constructional details
    • B01L2300/16Surface properties and coatings
    • B01L2300/161Control and use of surface tension forces, e.g. hydrophobic, hydrophilic
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2300/00Additional constructional details
    • B01L2300/16Surface properties and coatings
    • B01L2300/161Control and use of surface tension forces, e.g. hydrophobic, hydrophilic
    • B01L2300/165Specific details about hydrophobic, oleophobic surfaces
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2400/00Moving or stopping fluids
    • B01L2400/04Moving fluids with specific forces or mechanical means
    • B01L2400/0403Moving fluids with specific forces or mechanical means specific forces
    • B01L2400/0433Moving fluids with specific forces or mechanical means specific forces vibrational forces
    • B01L2400/0439Moving fluids with specific forces or mechanical means specific forces vibrational forces ultrasonic vibrations, vibrating piezo elements
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2333/00Assays involving biological materials from specific organisms or of a specific nature
    • G01N2333/005Assays involving biological materials from specific organisms or of a specific nature from viruses
    • G01N2333/08RNA viruses
    • G01N2333/11Orthomyxoviridae, e.g. influenza virus

Landscapes

  • Health & Medical Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hematology (AREA)
  • Engineering & Computer Science (AREA)
  • Analytical Chemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • Immunology (AREA)
  • Clinical Laboratory Science (AREA)
  • Molecular Biology (AREA)
  • Urology & Nephrology (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Dispersion Chemistry (AREA)
  • Biomedical Technology (AREA)
  • Virology (AREA)
  • Cell Biology (AREA)
  • Microbiology (AREA)
  • Biotechnology (AREA)
  • Tropical Medicine & Parasitology (AREA)
  • Food Science & Technology (AREA)
  • Medicinal Chemistry (AREA)
  • Physics & Mathematics (AREA)
  • Biochemistry (AREA)
  • General Physics & Mathematics (AREA)
  • Pathology (AREA)
  • Sampling And Sample Adjustment (AREA)

Abstract

The present invention relates to a kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate, belong to analysis testing field.The substrate physical presence series problem of hypotype swine flu diagnosis micro-fluidic chip is made using dimethyl silicone polymer i.e. PDMS that is cheap and easily processing.This case main points are, the selected PDMS with ecosystem surface of substrate, and the hinge-type fixture for being attached to miniature ultrasonic transducer units is fastened to the sample liquid stream terminal location for being positioned at the chip manually, with driving force of the ultrasonic wave induced synthesis based on interfacial tension difference, its driving force couples running with Micropump simultaneously, collaboration drives test liquid to flow to terminal direction flowing, micron silica granule filler is filled up in its pipeline of the chip, its function of the filler includes supporting pipeline inwall, and, with the set of hydrophily fluid channel come the hydrophobic pipeline of compensatory script, and, extruding, cover inner-walls of duct face and thereby reduce the chance that large biological molecule contacts with the internal face.

Description

A kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate
Technical field
The present invention relates to a kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate, the device is The special purpose device of hypotype swine flu antigen is diagnosed based on antigen/antibody specific reaction, belongs to analysis testing field.
Background technology
Multichannel micro-fluidic hypotype swine flu diagnostic techniques background, it is special to may refer to the grade inventions of CN 201110311127.1 Sharp application case.
Only for the microflow control technique overall general picture of itself, famous micro-fluidic expert Mr. Lin Ping Cheng may refer to not The monograph " diagram Microfluid based Lab on a chip " gone out before long, the monograph is published via Science Press, and the monograph is to micro-fluidic Past of technology, now, and, vision of the future etc. etc., suffer from detail, be deep into long discussion of detail.
So, the Important Problems of this case that to have a talk below concern.
The basic framework of micro-fluidic chip, including it is etched with the substrate of conduit and the cover plate to fit together therewith, institute State the fluid course on substrate, before upper cover plate is assembled, it is apparent on see to be exactly some conduits, wait until lid is covered thereon After piece, just really closure forms the fluid course, and the conduit inner surface of the conduit is together with the part that surround the conduit Cover plate forms described fluid course together;So, it is clear that assemble the fluid course after completing, its inner surface face Long-pending major part is the inner surface area of that conduit, and in other words, the state or property of the conduit inner surface are substantially determined The integrality or property of the fluid course are determined;Therefore say, the inner surface state or interior of this conduit of the structure on substrate Surface nature is key factor;In principle, any material that can be kept or keep its solid forms substantially, can be used To make substrate and cover plate, such as, the material that can act as substrate and cover plate can be monocrystalline silicon piece, quartz plate, sheet glass, height Polymers such as dimethyl silicone polymer, polymethyl methacrylate, makrolon etc.;Certainly, the selection of substrate and the choosing of cover plate Material be able to can also be differed with identical;From the point of view of material consumption, manufacture difficulty and application popularization prospect etc. etc., these Not small difference, the especially selection of that substrate between material be present, have a great influence.
In various substrate making materials, dimethyl silicone polymer, i.e. PDMS, comparatively very easily shaping, at this It is extremely simple that conduit is made on the substrate of sample, and the lower cost for material, substrate is made with the polydimethyl siloxane material, Conduit is being suppressed or etched thereon, and is being engaged with the cover plate that the cheap material such as glass or polypropylene or other plastic sheets makes, It is a kind of more satisfactory selection seemingly;Certainly, patch material can also select to use cheap polydimethyl siloxane material: So, this substrate selection is the scheme of polydimethyl siloxane material, and material is extremely cheap, and making is extremely simple, seems and should also be as It is extremely easy to popularize, promotes.
But thing is really not so simple.
First, this polydimethyl siloxane material, that is, the material that alphabetical PDMS is referred to of abridging, itself are a kind of strong Strong hydrophobic material, conduit is built on this material, if without being operated for the modified of the conduit surface, then, it is whole After body assembling is completed, that is, after covering cover plate, because the conduit its inner surface in structure occupies most fluid course Inner surface, then, its strong hydrophobic property of the PDMS conduits inner surface, is deciding factor, it can be similar to water The fine liquid stream of polar liquid of solution by becoming very difficult, its flow resistance is big, or even in general Micropump is all difficult to Promote, certainly, if cover plate also selects to use the PDMS material, then, problem is substantially identical, similar;Therefore, existing Among having technology, modification is modified particular for the conduit inner surface on the PDMS material, is necessary operation;So, this The individual modified operation for PDMS conduit inner surfaces is pretty troublesomeThat falls nor this problem, forms serious technical puzzlement, It is another problem:PDMS polymer molecules inside its body phase of this PDMS material substrate have to be diffused to the surface, moves automatically The characteristic of shifting, the characteristic that this substrate body phase inside PDMS polymer molecules are diffused to the surface, migrated automatically, will cause by table State after the modification of its inner surface of that conduit of face modifying and decorating can not maintain the sufficiently long time, and that is through surface Holding time for conduit its inner surface state after modification is substantially only sufficient to the time needs for completing laboratory internal test experiments; In other words, by surface is modified or the PDMS conduit inner surfaces of surface modification, after it is modified or institute's shape after modification is said Into surface state can not be lasting, but soon automatically tend to or say become again surface be modified before surface state, compared with The strong hydrophobic surface state of that script is returned in the short time, then, just think, such micro-fluidic chip can be big Amount making, mass storage, it is widely popularized, answer is it is obvious that is, impossible.Conduit on this PDMS material, does not do If surface modification, it can not pump and pass through similar to the fine liquid stream of polar solvent of the aqueous solution, chip also cannot just use;And such as Fruit has been cooked surface modification, can not persistently keep its state after modifying again, or equally can not popularization and application.
According to the literature, there is a kind of expedient solution, be that a small amount of surface-active is added in sample to be tested solution Agent, so as to which during test, dynamic, temporary transient effective surface hydrophilic layer is built temporarily in the PDMS conduits inner surface; However, due to the amphipathic characteristic of surfactant, the introduced surfactant of the program is inevitable simultaneously also can be with sample solution In tested composition occur combination so that tested composition can not be detected normally or it is detected ratio and dubiously dropped It is low;The surfactant is possibly even fully wrapped around by tested composition with micelle form so that tested composition can not be detected or Identification;Therefore, this kind adds the scheme of surfactant into sample solution, is far from a preferable solution.
So, how to accomplish that substrate can either be made using cheap PDMS material, and the conduit can be released Inner surface decorating state can not persistently, chip can not largely make, largely lay in and then be widely popularized and such a make this area The puzzlement that numerous professionals are entangled with for a long time, the highly difficult problem that exactly one its obvious technology barrier can not despise.
Be present many year in the highly difficult problem, so far, not yet properly settled.
Second, the PDMS material of non-surface modification, it is stated that, its surface is strongly hydrophobic above, this strong hydrophobic Material surface and also have another problem, that is, this strong hydrophobic PDMS surfaces can adsorb large biological molecule, and And these adsorbed large biological molecules can also further depression further on PDMS surfaces, gradually fall into it is gradually deep, until It is heavy to be trapped within the body phase of PDMS substrates, in fact, this process, partly it is also due to PDMS material body phase interior polymer Molecule, which has, to be diffused to the surface, caused by travel motion;Such case, it can also be explained from another angle, i.e. continue not Disconnectedly from inside PDMS body phases to those polymer molecules of its diffusion into the surface, migration, its result moved, be little by little by that It has been involved in a bit by the large biological molecule of adsorption within the body phase of PDMS substrates, briefly, these adsorbed biologies Macromolecular is exactly to be swallowed up by PDMS substrate body phases;So, this PDMS substrates body phase swallows up the phenomenon of large biological molecule, its institute Caused by influence, necessarily cause the severe deviations of all kinds of test data of experiment for being related to large biological molecule.
As described above, the problem of PDMS substrates, is, its not only adsorption large biological molecule, and swallow up biological big point Son, so, as the large biological molecule of experiment test object, its disappearance will not stop because surface saturation is adsorbed, and It is, it is constantly adsorbed, also constantly swallowed up.
On PDMS substrates, its body phase is constantly swallowed up and tests showing for associated biomolecule macromolecular in related experiment test process As, it is to say that another kind, which is explained, substantial amounts of Minute pores in PDMS body phases be present, associated biomolecule macromolecular by after adsorption, Depression enters these Minute pores, and then is swallowed up;However, inventor thinks, those can allow the sky of miniature scale Qi leel squeezes into the Minute pores therebetween, not equal to saying that they also can directly allow the large biological molecule of relative large scale to enter Enter, both difference on yardstick are huge, must not make sweeping generalizations.Explanation is bypassed, in any case, as dependence test analysis object Large biological molecule is adsorbed by PDMS substrate conduits inner surface, and then is constantly swallowed up by PDMS substrate body phases, and this is known objective Existing phenomenon.
, can be from containment PDMS surfaces pair in order to prevent swallow up effect of this PDMS substrate bodies relative to large biological molecule The absorption of large biological molecule addresses, and method is chemically modified modification aiming at the PDMS material surface, for For PDMS is the situation of substrate material, modification exactly is chemically modified to the surface of described channel portion, by chemistry The conduit inner surface of modification, can contain its absorption to large biological molecule, and then avoid large biological molecule quilt PDMS substrate body phases are swallowed up;But or that old problem, that is, the chemical modification on PDMS material surface is modified it Surface state afterwards can not persistently be kept, the polymer molecule inside the PDMS substrate body phases its diffuse to the surface, migrate automatically Process, can soon by that by surface chemical modification be modified conduit inner surface state become again script it is strong it is hydrophobic simultaneously And the state of strong adsorption large biological molecule, in other words, no matter how professionals in the field turn from side to side, the PDMS substrates its Conduit inner surface is always rapidly to strong hydrophobic surface state evolution.
So, how can either obtain that PDMS material price is extremely cheap, substrate makes extremely easy benefit, and can is enough Reach and contain the absorption process of the PDMS substrate conduit inner surfaces to large biological molecule for a long time, and then prevent PDMS substrate bodies relative The effect of swallowing up of large biological molecule so that related chip manufactured goods are able to maintain that a prolonged enough, rational shelf-life, It is exactly a very intractable problem.The problem equally makes this area numerous specially as another problem addressed above Industry personnel are entangled with, perplexed for a long time, and the problem is equally the highly difficult problem that its obvious technology barrier can not despise.Should Also be present many year in problem, so far, also not yet properly settled.
Third, as described above, the PDMS conduit inner surfaces are strongly hydrophobic, and targetedly surface chemical modification or come to the surface Learn modification to be difficult to again persistently, therefore, actually can only still belong to effective in the surface state after the modification of its surface or surface modification It is used within short-term;If having had been subjected to that ofer short duration period of validity, and still by force if use, due to surface State already again close to hydrophobic state, then certainly exists bigger flowing using usual Micropump driving sample liquid stream and hindered Power, so, just by increasing Micropump pump power and pumping pressure test liquid can only be forced to flow to target direction flowing, as above institute State, this PDMS material is soft, and sample liquid stream is pumped with too high, mechanical pumping pressure, will cause the substrate its Bubbling, expanded, distortion, deformation, also, this high-pressure situations occur for the conduit that sample introduction end includes sample introduction end near zone Under, the stripping between substrate and cover plate, this feelings also easily occur in the sample introduction end and its conduit of near zone and its periphery Under shape, sample solution flows in the crack for entering appearance of the stripping afterwards between the substrate and cover plate of formation everywhere, this Actually result in the damage of the micro-fluidic chip;Certainly, it is not in place if surface modification or surface modification script, also result in There is said circumstances within the of short duration usual term of validity;In the case where carrying out liquid stream driving using additional Micropump merely, The above-mentioned problem exists all the time.As described above, if it is preposition not do any surface modification or surface modification etc. completely Operation, then, the above-mentioned problem will be even more serious, even without conduit bubbling described in sample introduction end and its near zone, swollen occurs The problems such as changing, being peeled off between distortion, deformation and substrate and cover plate, merely because the flow resistance is excessive, using high pressure Micropump Also sample liquid stream may not can be driven to be marched forward towards terminal side.
Fourth, the polydimethyl siloxane material, namely PDMS material, the active force very little wherein between polymer molecule, The polymer molecule of low polymerization degree inside its body phase is in constantly into the dynamic process of surface migration, therefore, includes PDMS After it has been formed, the surface topography in its inner-walls of duct face of chip can be because of described low polymerization degree polymer point for the chip of substrate material Son moves about, pours into the surface and change, and the change of its pattern is somewhat similarly to Rheological Deformation, trickling deformation or creep and become Pattern caused by shape institute is possible changes;In the higher PDMS material of some low polymerization degree component ratios, this kind somewhat similar Can be showed in the phenomenon of Rheological Deformation, trickling deformation or the deformation of creep must be than more significant;This kind include PDMS substrates chip its The dynamic of inner-walls of duct surface topography after shaping changes property, namely the described property or stream that are somewhat similarly to Rheological Deformation Dropping down the property of deformation or the property of the deformation of creep, the word of rheology one is applied mechanically in this case, integration, also referred to as the rheological equationm of state or rheology become Shape property, the dynamic of corresponding inner-walls of duct face pattern change, and this case is also referred to as rheology;As described above, because of this kind of material Expect certain Rheological Deformation property as described above that its own has, its manufactured goods actually can at leisure Rheological Deformation and cause The manufactured goods total form generation changes;Influence caused by its Rheological Deformation property, it is to be not easy to feel in terms of macroscopic perspective Examine, still, for the very fine micro-fluidic chip of its internal structure, the rheological equationm of state can but cause bigger shadow Ring, the fluid course namely the pipeline therefore, during pre-production formed, because the wall of its tube chamber of pipeline is main It is the wall of PDMS materials, so, the cross-sectional area of the pipeline actually can gradually become because of rheology over time It is small, stated differently, since the reason for the rheology, the natively finer pipeline that is flowed through for liquid sample Its tube chamber the more can become the more narrow, in the case of flow time is sufficiently long, or even the pipeline tube chamber can partly close or all Ground closes, and then make it that sample fluid course is thoroughly blocked, and closes with being even also not reaching to its luminal part of pipeline The degree closed or fully closed, its fluid passage that can be provided of that pipeline narrow because of rheology, then, in pipeline Its inner surface originally be exactly strongly it is hydrophobic in the case of, aqueous sample liquid is just more difficult to by becoming more so because of rheology Narrow micro-channel, then, the influence of substrate rheology how is resisted, maintains the basic framework of the pipeline not occur seriously to become for a long time The problem of shape, also, keep the long-term unobstructed of the pipeline is exactly a urgent need to resolve.
The content of the invention
The technical problem to be solved by the invention is to provide a package solution, while solve to address above A series of problem, also, the solution is applied to hypotype swine flu diagnosis multichannel micro-fluidic chip field, shape Into a kind of new hypotype swine flu diagnosis Multichannel device.
The present invention solves the technical problem by following scheme, and the device that the program provides is a kind of using strong hydrophobic group The hypotype swine flu detection micro flow control chip device of piece, the structure of the device include multichannel micro-fluidic chip, and this is micro-fluidic The structure of chip includes being bonded to each other the substrate and cover plate of installing together, and the substrate and cover plate are plate object or sheet The channel structure via mould pressing process or etching technics formation, mutually patch are contained in thing, that face towards the cover plate of the substrate Close the substrate being installed together and be built into the micro-fluidic chip containing pipeline configuration, the structure of the pipeline jointly with the cover plate Position is located at the juncture area that the substrate and the cover plate are bonded to each other, the both ends of the pipeline sample introduction with the micro-fluidic chip respectively End and terminal connection, the sample introduction end are the injection ends of the micro-fluidic chip sample solution, and the terminal is micro-fluidic chip reality The terminal that sample solution flows in its chip during the sample introduction test of border, the terminal are located remotely from each other with the sample introduction end, and the terminal is entered with this Between 3 centimetres and 10 centimetres, the terminal links together with terminal liquid pool at the distance between sample end, its knot of the terminal liquid pool The profile of structure is in pond shape, pit shape or cup-shaped, and the terminal liquid pool is used to receive the sample solution for flowing to terminal via the pipeline, Working electrode is sequentially equiped with diverse location in the pipeline and to electrode and reference electrode, the working electrode is by leading Conductive electrodes and the gold size sensitive membrane for having embedded hypotype swine flu specific antibody being attached on the conductive electrode are formed, The construction of the pipeline is in parallel construction, and the pipeline in parallel construction is made up of three lateral parallel connections, the work electricity The quantity of pole is three, and the installation position of three working electrodes is located in three laterals respectively, and, this three Specific antibody in its top layer gold size sensitivity membrane structure of working electrode is that hypotype swine flu antigen can be specifically bound respectively Three kinds of hypotype swine flu antibody materials, three kinds of antibody materials are hypotype swine flu specific antibody H respectively1N1、H3N2And H1N2, its material of the working electrode is gold material or thermal decomposition conducting polymer material, and its pattern of the working electrode is presented Sheet is thread, and emphasis is that its material of the substrate is dimethyl silicone polymer material, and its surface of the substrate is the table of primary form Face, the surface of the primary form its be intended to refer to not by any surface chemical modification or any surface chemical modification should The surface of the primary form of material, the structure of the device also include hinge-type fixture, hinge-type fixture its appearance profile likeness in form Hinge, the hinge-type fixture by two hinges being mutually hinged and through two hinges a fastening screw with An and nut for being used for manual fastening and hand break loose for matching with the fastening screw and being connected together with the fastening screw Form, two hinges of the hinge-type fixture are respectively mutually drawn close with its tip and clamp the micro-fluidic chip, the tip positioning Fixed dress is attached in the locations of structures of the neighbouring terminal of the micro-fluidic chip, in a hinge at least in Provided with miniature ultrasonic transducer units, and, higher-order of oscillation electric signal transmission cable, the one of the higher-order of oscillation electric signal transmission cable End links together with the miniature ultrasonic transducer units;The hinge-type fixture provides a function of facilitating the device to disassemble; Its major function of the miniature ultrasonic transducer units is in the actual sample introduction test of micro-fluidic chip, utilizes the sample introduction end and institute State on the distance between terminal and the miniature ultrasonic transducer units installation position difference and its ultrasonic intensity experienced Difference, the difference between its interfacial tension of sample introduction end described in induced synthesis and the terminal its interfacial tension, the micro-fluidic core Interfacial tension difference between the piece both ends can form pressure gap between the both ends of the micro-fluidic chip, the pressure gap Sample solution can be driven to the end flow;It is soft and have the substrate of the dimethyl silicone polymer material of elasticity its function bag Include with its property to the strong absorption of ultrasonic wave, ultrasonic wave is absorbed strongly, and thereby in the micro-fluidic chip terminal The rapid decrement of ultrasonic intensity is realized within to the limited short distance between the sample introduction end;And Micropump, the Micropump is with being somebody's turn to do Sample introduction end connects, and the Micropump is built-in Micropump or external Micropump;The function of the Micropump is pumped with the mechanicalness of the Micropump Interfacial tension difference its caused driving force between the both ends that strength induces come the ultrasonic wave is supported mutually, mutually Mutually adjust, be mutually coupled, the power that one driving test liquid flows to the terminal direction flowing is pooled in a manner of Collaboration Amount;Described its thickness of cover plate and substrate is between 1.0 millimeters and 5.0 millimeters;And many silica dioxide granules, should Many silica dioxide granules are filled in the pipeline, and its tube chamber of the pipeline is filled out by many silica dioxide granules Full, for its particle size range of the silica dioxide granule between 10 microns and 200 microns, the silica dioxide granule is titanium dioxide silicon wafer Its unorganic glass of shared percentage by weight more than 80% of state particle, silica glass granule or silica composition Grain, some high hydroscopic resin particles are filled with the terminal liquid pool, its opening end of the terminal liquid pool is covered by breathable microporous film.
Only for the word of high hydroscopic resin one art-recognized meanings of itself, come for the professional of chemical field Say, be known.
The high hydroscopic resin is commercially available.
Only for the word of breathable microporous film one art-recognized meanings of itself, for the professional of technical field of membrane, It is known.
The breathable microporous film is commercially available.
Its particle diameter of the silica dioxide granule can be that the basis between 10 microns and 200 microns is actually needed and any The particle diameter specified, such as 10 microns, 30 microns, 70 microns, 100 microns, 150 microns or 200 microns of the particle diameter, etc..
The scope of further preferred its particle diameter of the silica dioxide granule is between 100 microns and 200 microns.
Its pattern of the silica dioxide granule is unlimited, and the silica dioxide granule for example can be spheric granules, rod-shaped particles, length Cube shape particle or any amorphous granular.
The various silica dioxide granules manufacturing technology of itself is known technology.
Various forms, the silica dioxide granule market of all size are on sale.
The silica dioxide granule can also customize to specialized factory.
The preferred scope of its internal diameter of pipeline is between 500 microns and 1000 microns;It is but excellent compared to above-mentioned The internal diameter of the pipeline scope of choosing, more tiny internal diameter of the pipeline or thicker internal diameter of the pipeline are also what this case was allowed.
Described miniature ultrasonic transducer units can certainly be all installed in two hinges;But only install one Individual miniature ultrasonic transducer units are dealt with enough to be used.
The word of hinge one art-recognized meanings of itself are known.
The word of Micropump one art-recognized meanings of itself are known for the professional in micro-fluidic chip field.
For example miniature piezoelectric pump of the Micropump, miniature peristaltic pump or miniature air driven pump.
The Micropump both can be the Micropump of external form;The Micropump can also do into or say the embedded micro-fluidic chip The Micropump of the built in version of its internal sample introduction end structure position or the sample introduction end Near-neighbor Structure position.
The gold size sensitive membrane is to be sufficiently mixed chitosan gold size solution and hypotype swine flu specific antibody solution It is even, with point sample instrument point sample or specified structure position is coated on, and form its drying and forming-film.Hypotype in the gold size sensitive membrane Swine flu specific antibody be horseradish peroxidase or glucose oxidase mark hypotype swine flu antibody, the gold Glue sensitive membrane has been included as fixing above-mentioned each hypotype swine flu specific antibody and introducing complementary medium therein, the auxiliary Property medium such as chitosan, cellulose acetate, gelatin be therein a kind of or their mixture.
The pipeline in the microfluidic chip structure includes the lateral, and its internal diameter size may each be any Selected size, still, for using prepare liquid sample less as far as possible and reducing the consideration of reagent loss etc., the pipeline includes The lateral preferably selects the passage of capillary level, and the passage of the capillary level is implied that on its internal diameter and ordinary meaning Capillary the suitable passage of internal diameter.The shape of cross section of its inner passage of capillary can be arbitrary shape, institute State for example circular shape of cross section, oval, square, rectangle, bar shaped, naturally it is also possible to it is the linear of bending arbitrarily be present, Also, the interior shape of the capillary, with the extension of pipeline, the shape of cross section of different parts can also allow to be different Shape.Only for the word of capillary one, its art-recognized meanings is known.
What is be related in structure is the electrode of microsize to electrode and reference electrode, and its electrode shape, which may each be, appoints The selected shape of meaning, the arbitrarily selected shape such as square piece shape, rectangular patch, strip or round sheet etc..It is described Art-recognized meanings to electrode and the reference electrode vocabulary of itself are known.
Only for professional of the word of ultrasonic transducer one art-recognized meanings of itself for ultrasonic technology field, It is known.
Various sizes, variously-shaped ultrasonic transducer are commercially available;Its size of commercially available miniature ultrasonic transducer units It may diminish to the magnitude only calculated with millimeter.
Only with regard to miniature ultrasonic transducer units its technique for fixing on general industry application solid body surface its It is known general technology for the professional in ultrasonic technology field for body.This case is not to this expansion superfluous words.
Only with regard to naked PDMS substrates itself conduit molding or lithographic technique for, be open-and-shut known technology.
The industrial products market of involved its all size of higher-order of oscillation electric signal transmission cable is on sale.
The structure of the device can also include higher-order of oscillation electric signal generator;The higher-order of oscillation electric signal transmission cable Its other end can be connected with the higher-order of oscillation electric signal generator.
The involved higher-order of oscillation electric signal generator technology of itself, come for the professional in ultrasonic technology field Say, be simple and known;The higher-order of oscillation electric signal generator can customize to ultrasonic instrument specialized factory.
The preferred scope of its specified ultrasonic wave transmission power of the miniature ultrasonic transducer units is between 5 milliwatts and 9000 milliwatts Between;The preferred scope of the frequency of its ultrasonic wave operationally launched of the miniature ultrasonic transducer units be between 100KHz with Between 12MHz.
This case device can further include some annexes certainly, and the annex is such as multiple tracks electrochemical workstation Deng the art-recognized meanings of the multiple tracks electrochemical workstation are known.The each work being related in this case microfluidic chip structure Electrode and to electrode and reference electrode etc., special it can get lines crossed and the multiple tracks electrochemical workstation via corresponding respectively The corresponding interface coupled.It is described that special to get lines crossed be for by each phase of each electrode and the multiple tracks electrochemical workstation Answer the private cable that interface is coupled to each other.The micro-fluidic chip in this case device, its structure can also include micro-valve, The quantity of the micro-valve is unlimited, and according to being actually needed, the micro-valve can be installed in any need in the microfluidic chip structure Position to be mounted;The word of micro-valve one is for the professional of micro fluidic chip technical field, the art-recognized meanings of itself It is known;The micro-valve itself manufacturing technology and the use of technology is also known;The component that the micro-valve is not required.
The diameter of the working electrode can allow to be that any setting is easily installed the suitable diameter used, still, It is recommending or say preferable its scope of the diameter between 0.1 micron to 2000 microns;The length of the working electrode can To allow to be that any setting is easily installed the length used, it is however recommended to or to say the preferable length its scope be 1 Micron is between 15000 microns.
It is installed in by spraying or point sample instrument point sample or the coating of other appropriate process described in the working electrode surface layer Gold size sensitive membrane, its thicknesses of layers can allow be any setting treat sample measuring liquid occur electrical signals response thickness, It is however recommended to thickness preferable thickness is between 10 nanometers and 200 nanometers in other words.
The cover plate in chip structure, its material can allow to be any electrical insulating property material, such as:Polypropylene, Glass, polymethyl methacrylate, dimethyl silicone polymer, etc., in order to make smaller size of micro-fluidic chip, for example do Into the micro-fluidic chip of only 2.0 centimetres to 3.0 centimetres of super-small of length, and realized in the extremely short distance to ultrasonic wave Extremely fast decay, can preferably dimethyl silicone polymer be used as cover plate.Certainly, selected on large-sized micro-fluidic chip Using dimethyl silicone polymer it is used as the cover plate, and this case technical scheme is allowed.
Described its thickness of cover plate and substrate can allow be any setting the thickness for being easy to assembling, the thickness of recommendation or say Preferable thickness is between 1.0 millimeters and 5.0 millimeters.Less thickness is advantageous to save material.
The application method of this case micro-fluidic chip:
This case drives liquid stream in the capillary channel of the triple channel micro-fluidic chip with dual drive coupling operating mode Middle flowing, three kinds of hypotype swine flu diagnostic antigens are detected respectively using multi-channel electrochemical analyzer device.
The specific detection of this case micro-fluidic chip is as follows using step:
1st, blood serum sample liquid is added in micro-pipe road, under dual drive coupling operating mode driving, various hypotype pigs The Asia for the corresponding horseradish peroxidase-labeled that influenza antigens molecule is embedded by gold size sensitive membrane on electrode surface in each passage Type swine flu specific antibody captures.
2nd, the hypotype swine flu specific antibody of horseradish peroxidase-labeled resists with the hypotype swine flu in blood serum sample Original shape is into immune complex.
3rd, using multi-channel electrochemical analyzer, the electron mediators such as catechol are added, it is above-mentioned using amperometric detection Curent change caused by reaction, it is derived from the species and content of various analytes.
4th, result is subjected to comprehensive analysis, comprehensive diagnos is carried out to hypotype swine flu antigen.
It is an advantage of the invention that its close position positions the hinge-type folder in the terminal of the micro-fluidic chip Tool, and its hinge attaches installation miniature ultrasonic transducer units in the hinge-type fixture, with miniature ultrasonic transducer units transmitting The ultrasonic wave of low-power, high-frequency band, meanwhile, using its strong absorbability to ultrasonic wave of dimethyl silicone polymer substrate, In shorter distance, it is, from the terminal to the very short distance of only several centimeters yardsticks the sample introduction end It is interior, reach the rapid decrement of ultrasonic intensity, the difference of the interfacial tension is thereby caused at the both ends of the micro-fluidic chip Different, the pressure gap that this kind is formed by Ultrasonic Radiation itself is exactly that one drives sample solution to the end flow Strength, while the driving force that it is gone back and Micropump is provided intercouples, Collaboration, above-mentioned two bursts of strength makes a concerted effort to drive in the lump Sample liquid stream flows in the pipeline to the terminal direction.
Its scheme of this case and by the pipeline except electrode installation take up space in addition to all clearance spaces whole Filled up with the silica dioxide granule.Those are filled in the silica dioxide granule in pipeline, and this case is to its overall abbreviation titanium dioxide Silicon grain filler, its function include support, withstand the tube chamber of the pipeline its inwall so that the tube chamber of the pipeline is from because of institute State rheology and narrow, prevent its reduced cross-sectional area of the tube chamber of the pipeline or even close, so as to maintain the base of the pipeline for a long time Serious deformation does not occur for this framework.
Numerous silica dioxide granule entities are mutually banked up under this case framework together at random in the pipeline, the titanium dioxide The function of silicon grain filler, also include certainly with the hydrophilic surface of its silica dioxide granule, utilize each adjacent titanium dioxide Mutual formed complications are continuous and its inner surface that is mutually close together by water-wetted surface of silicon grain has hydrophilic The space of property, in the hydrophilic fluid channel of the pipeline Inner Constitution network morphology, although this complications can be continuous All the time the fluid channel with hydrophilic nmature, then, inside the tube chamber of the pipeline simultaneously and a plurality of miniflow deposited The effect of its synthesis of road, integrated, cumulative superposition in other words, is the equal of the relatively fine hydrophilic capillary of caliber Passage;Its presence of the continuous hydrophilic fluid channel of the complications, the PDMS of the primary form is counteracted to a large extent The flow resistance for liquid sample caused by the strong hydrophobic property in its surface of substrate;In other words, because of liquid sample, it is accounted for The composition of maximum ratio is water, and liquid sample is substantially exactly the aqueous solution, therefore, the presence of the silica dioxide granule filler, Can significantly overcome with the unmodified PDMS substrates of hydrophobic property and surface its to the aqueous solution it is incompatible, repel and Barrier effect, so be greatly reduced belong to properties of Aqueous Solution sample liquid stream its be advanced through the resistance of pipeline.
Under this case framework, inside the tube chamber of the pipeline, the area of its lumen wall wall of former pipeline, because of described two The rigid of silicon oxide particle filler ties up, the table of part hydrophobic property that still can also be exposed on lumen wall wall Its area of face is already dramatically reduced, and the area on its still exposed part surface for belonging to hydrophobic property is much Less than the wall surface area of the hydrophobic property of the lumen wall wall in the presence of no silica dioxide granule filler; So, under this case framework, in its lumen of the pipeline, its remaining hydrophobic surface increases surface newly with hydrophilic part, and it is folded Adding, comprehensive, summation, cumulative technique effect, is to form the surface for tending to be hydrophilic on the whole;In other words, in institute State inside the tube chamber of pipeline, its interfacial tension between sample solution of the part surface of remaining hydrophobic property, plus parent The part of aqueous nature increases its interfacial tension between sample solution of surface newly, that it is superimposed, comprehensive, summation, cumulative Technique effect, be so that its solid-liquid interfacial tension inside the tube chamber of the pipeline synergy level off to capillary glass tube its Interfacial tension between tube chamber inner surface and sample solution.
On the other hand, due to its rheological equationms of state of the PDMS as substrate material, it is filled in the pipeline The interior silica dioxide granule filler, can gradually by constantly Rheological Deformation and to arest neighbors free space promote PDMS The pipeline wall of material more tightly wraps up, and this process eventually causes those part two for pressing close to the lumen wall wall Silicon oxide particle is stuck in original place or is stuck in original place or embedding in-situ silica dioxide granule and its embedded in original place, the part Incarceration is together, described due to this reason each other for the remaining silica dioxide granule banked up with being mutually closely packed together Silica dioxide granule filler just will not move in the pipeline easily, silica dioxide granule therein be also substantially all by Original place is locked in, therefore the stream framework of the micro-fluidic chip can be kept for a long time.
The particle size range of its particle of this case silica dioxide granule filler between 10 microns and 200 microns, compared to For general organic molecule, general large biological molecule, the particle diameter of its particle of this case silica dioxide granule filler can be rated as huge Greatly, due to its huge particle diameter, and the inner surface of the surface of its polarity and the pipeline of strong hydrophobic PDMS materials can not Mutually perhaps say and mutually melt, then, the huge silica dioxide granule of this kind of particle diameter can not be by the pipeline of PDMS materials Surface is adsorbed, and can not more be swallowed up by the inner surface of the pipeline of PDMS materials, the huge titanium dioxide of this kind of particle diameter Silicon grain surely not be fully sunk in easily or sink to completely PDMS materials its among intrinsic many Minute pores, and Because above it is stated that the rheology the reason for, the silica dioxide granule filler can be stuck in original place in other words it is embedding In original place without moving easily.
Inside the tube chamber of the pipeline, its lumen wall wall of former pipeline is entirely the surface of hydrophobic property originally, such as Upper described, under this case framework, rigid because of the silica dioxide granule filler ties up, on lumen wall wall still also Its area of the surface of part hydrophobic property that can be exposed is already dramatically reduced, and it is still exposed to belong to hydrophobicity The area on the part surface of matter has been far smaller than the tube chamber in the presence of no silica dioxide granule filler The wall surface area of the hydrophobic property of inwall wall;The reason for because of the rheology, it is close to those dioxies of lumen wall wall Silicon carbide particle, little by little it is partially embedded into or is partly absorbed among the lumen wall wall, the dioxy among the state Silicon carbide particle its towards the part surface of lumen wall wall with have occurred and that matching deformation the lumen wall wall it is tight Closely connected conjunction, then, the matching is deformed and closely pasted with silica particles having occurred and that in lumen wall wall The part wall of conjunction actually can not contact with flowing through the sample solution of pipeline, that is to say, that the wall of this part is Through suction-operated can not be produced to the large biological molecule therein that flows through the sample solution of pipeline and organic molecule.Based on above-mentioned Mechanism, then because fill up the pipeline the silica dioxide granule filler its presence, its lumen wall wall of the pipeline The overwhelming majority in face is tightly covered, and these described walls tightly covered can not be with flowing through the pipeline Sample solution contact, only remaining fraction be not brought into close contact by its surface of silica dioxide granule, tightly cover Hydrophobic surface may be contacted with sample solution, in other words, under this case framework, large biological molecule in sample solution and have Its direct touch opportunity with hydrophobic PDMS walls of machine molecule is significantly reduced, thus, the lumen wall faces of PDMS materials its The adsorptive hindrance and interference of swallowing up of large biological molecule and organic molecule are greatly reduced;As described above, this case scheme Be advantageous to exclude or weaken the adsorptive hindrance and swallow up interference, be advantageous to be lifted the reliability of correlation analysis test data.
As described above, this case silica dioxide granule filler, its function actually includes being similar to being directed to PDMS materials Inner surface of pipeline carry out chemical modification effect, functioning as its this respect of this case is by the pipeline of the PDMS materials Surface by the surface modification of hydrophobic property into the surface of hydrophilic nmature, still, with general, usual PDMS surface chemical modifications Its hydrophilic chemical decorative layer retention time is short, hydrophilic effect can not keep situation prolonged enough different, particle described in this case Huge silica dioxide granule filler, its particle being stuck by rheology can not both be moved easily, its huge particle diameter Particle can not more be swallowed up easily by the inner-walls of duct of PDMS materials, and therefore, its from this respect is similar to surface chemical modification Technique effect on see, its technique effect of this case, be form it is permanent, can not erase, can not consume, not be corroded, not by Hydrophilic surface reforming layer swallowing up, being not dissolved, it is just comparable to one kind in its correlation table of PDMS base materials in effect The permanent hydrophilic modifying superficial layer built on face.
With the simultaneous Micropump of miniature ultrasonic transducer units in its structure of micro-fluidic chip, its function is, with this Its caused drive of the interfacial tension difference that the mechanicalness pumping strength of Micropump is come between the both ends of ultrasonic wave induction Amount of power is supported mutually, adjusts mutually, is mutually coupled, and is pooled in a manner of Collaboration described in one driving test liquid flow direction The strength of terminal direction flowing;The presence of the Micropump so that the miniature ultrasonic transducer units its ultrasonic wave emissive porwers can be by Appropriateness is allowed to reduce, this is particularly suitable for for the situation containing ultrasonic wave sensitive composition in detection object;And because this is miniature super The presence of acoustic wave transducer and its radiated ultrasonic wave, the micro-fluidic chip its both ends interfacial tension can be induced and difference occur And the special driving force for being directed to sample solution is thereby brought, meanwhile, due also to being filled out in its pipeline of this case micro-fluidic chip Fill the silica dioxide granule with hydrophilic nmature, then, in the scenario above, its resistance of flowing in the pipeline of sample liquid stream Power is greatly reduced, and correspondingly, its running resistance of the Micropump is greatly reduced, and so, the Micropump just can be with than relatively low pumping pressure Power carries out the pumping work for the sample solution, because mechanical pumping pressure is greatly reduced, therefore, such one Under kind of situation, be just not susceptible to because the sample introduction end caused by sample introduction end Micropump its mechanicalness pumping pressure is excessive and its near The problems such as stripping between the conduit bubbling in region, expansion, deformation, distortion and the region substrate and cover plate etc.;This case should Dual drive couples the scheme of running and added for the handling of sample fluid flow action, can allow for using ultrasound Intensity of wave, ultrasonic frequency, Micropump pump power, Micropump pumping pressure etc. multiple indexs are fast to be directed to the flowing of the flowing Rate, flowing action include flow forward or pause flowing or acceleration flowing etc. flowing action carry out multi-parameter and accurately manipulated;Such as It is upper described, the presence of the Micropump so that its ultrasonic wave emissive porwer of the miniature ultrasonic transducer units can be allowed to appropriate reduction, So, the feature additionally aids described its sensitive coating of working electrode of protection, is allowed to from ultrasound injury.
It is related that the technical scheme of this case has dissolved its application to dimethyl silicone polymer substrate addressed above totally A series of technical barriers.Based on this case scheme, this kind be very cheap and the easily dimethyl silicone polymer material of processing and fabricating Material be just possible in the micro-fluidic chip its prepare, production, using etc. field play bigger effect.
The miniature ultrasonic transducer units have been installed in fixation in the hinge-type fixture its hinge in this case structure, the structure A function of facilitating the device to disassemble is provided, in this way, the hinge-type fixture is together with miniature ultrasonic appended in its hinge Transducer just easily can be mutually disengaged with the micro-fluidic chip, then, the component that the part can freely depart from just can be good Property is re-used cyclically many times;The architectural feature is advantageous to save the use cost of the device.
Brief description of the drawings
Fig. 1 is its rough outside side view of this case micro flow control chip device.
In figure, 1 is hinge-type fixture, and 2 sign linkwork positions, 3 be fastening screw, and 4 be higher-order of oscillation telecommunication Number transmission cable, 5 be miniature ultrasonic transducer units, and 6,11 be two different hinges of locations of structures respectively, and 7 be cover plate, and 8 be base Piece, 9 be sample introduction end, and 10 be terminal, and 12 be nut, and 13 be infusion tube, and 14 be Micropump;The hinge-type clamp structure in legend Only it is the legend structure of signal, actual its structure of the hinge-type fixture is not limited to the legend hinge-type clamp structure;In legend Arrow indicate the micro-fluidic chip its in actual motion, by pressure at two ends difference drive, the flow direction of its sample liquid stream.
Embodiment
In this case that Fig. 1 is shown embodiment, the structure of the device includes multichannel micro-fluidic chip, and this is micro-fluidic The structure of chip includes being bonded to each other the substrate 8 and cover plate 7 of installing together, and the substrate 8 and cover plate 7 are plate object or piece The channel structure via mould pressing process or etching technics formation, phase are contained in shape thing, that face towards the cover plate 7 of the substrate 8 The substrate 8 being mutually jointly mounted to together has been built into the micro-fluidic chip containing pipeline configuration jointly with the cover plate 7, the pipeline Locations of structures be located at the juncture area that the substrate 8 and the cover plate 7 are bonded to each other, the both ends of the pipeline respectively with the micro-fluidic core The sample introduction end 9 of piece and terminal 10 connect, and the sample introduction end 9 is the injection end of the micro-fluidic chip sample solution, and the terminal 10 is The terminal that sample solution flows in its chip when the actual sample introduction of the micro-fluidic chip is tested, the terminal 10 and the sample introduction end 9 are mutual Remote, between 3 centimetres and 10 centimetres, the terminal 10 joins with terminal liquid pool for the distance between the terminal 10 and the sample introduction end 9 It is tied, the profile of its structure of the terminal liquid pool is in pond shape, pit shape or cup-shaped, and the terminal liquid pool is used to receive via the pipe Road flow to the sample solution of terminal 10, working electrode is sequentially equiped with diverse location in the pipeline and to electrode and Reference electrode, the working electrode by conductive electrode and be attached on the conductive electrode embedded hypotype swine flu spy The gold size sensitive membrane of heterogenetic antibody is formed, and the construction of the pipeline is in parallel construction, and the pipeline in parallel construction is by three points Branch pipe(tube) is in parallel to be formed, and the quantity of the working electrode is three, and the installation position of three working electrodes is respectively positioned at described In three laterals, and, the specific antibody in its top layer gold size sensitivity membrane structure of three working electrodes is pair respectively Three kinds of hypotype swine flu antibody materials that hypotype swine flu antigen can be specifically bound, three kinds of antibody materials are hypotype pig respectively Influenza-specific antibody H1N1、H3N2And H1N2, its material of the working electrode is gold material or thermal decomposition conducting polymer material Sheet or thread is presented in matter, the working electrode its pattern, and emphasis is, its material of the substrate 8 is dimethyl silicone polymer material, Its surface of substrate 8 is the surface of primary form, the surface of the primary form its be intended to refer to and do not come to the surface by any The surface of the primary form of the material of modification or any surface chemical modification is learned, the structure of the device also includes hinge-type fixture 1, the hinge-type fixture 1 its appearance profile likeness in form hinge, the hinge-type fixture 1 is by two hinges 6,11 for being mutually hinged And a fastening screw 3 through two hinges 6,11 and one matched with the fastening screw 3 and with the fastening screw 3 The nut 12 of fastening and hand break loose manually that is used for connect together is formed, and the nut 12 employs in this example to be easier Manually operated butterfly nut, butterfly nut is commercially available, and two hinges 6,11 of the hinge-type fixture 1 are respectively mutual with its tip Draw close and clamp the micro-fluidic chip, the tip is positioned at the locations of structures of the neighbouring terminal 10 of the micro-fluidic chip On, attaching, which is fixed, in a hinge at least in is equiped with miniature ultrasonic transducer units, in this example, the miniature ultrasonic Wave transducer 5 is to attach to be fixed in hinge 6, and, higher-order of oscillation electric signal transmission cable 4, the higher-order of oscillation electric signal passes One end of transmission cable 4 links together with the miniature ultrasonic transducer units 5;The hinge-type fixture 1 provides one and facilitates the dress Put the function of disassembling;Its major function of the miniature ultrasonic transducer units 5 is in the actual sample introduction test of micro-fluidic chip, utilizes institute State the distance between sample introduction end 9 and the terminal 10 and the installation position of miniature ultrasonic transducer units 5 difference and it is felt The difference on ultrasonic intensity being subject to, its interfacial tension of sample introduction end 9 described in induced synthesis and described its interfacial tension of terminal 10 Between difference, interfacial tension difference between the micro-fluidic chip both ends 9,10 can the both ends 9 of the micro-fluidic chip, Pressure gap is formed between 10, the pressure gap can drive sample solution to be flowed to the direction of terminal 10;Softness simultaneously has elasticity The substrate 8 of the dimethyl silicone polymer material its function include with its property to the strong absorption of ultrasonic wave, ultrasonic wave is entered Row is strong to be absorbed, and is thereby realized within micro-fluidic chip terminal 10 to the limited short distance between the sample introduction end 9 The rapid decrement of ultrasonic intensity;And Micropump 14, the Micropump 14 are connected with the sample introduction end 9;The function of the Micropump 14 is, with Its institute of interfacial tension difference that the mechanicalness pumping strength of the Micropump 14 is come between the both ends 9,10 of ultrasonic wave induction The driving force brought is supported mutually, adjusts mutually, is mutually coupled, and one driving test liquid is pooled in a manner of Collaboration Flow to the strength of the direction of terminal 10 flowing;The cover plate 7 and substrate 8 its thickness between 1.0 millimeters with 5.0 millimeters it Between;And many silica dioxide granules, many silica dioxide granules are filled in the pipeline, its pipe of the pipeline Chamber is filled up by many silica dioxide granules, its particle size range of the silica dioxide granule between 10 microns with 200 microns it Between, the silica dioxide granule is silica crystalline particles, silica glass granule or silica composition its shared weight Inorganic glass particles of the percentage more than 80%, the terminal liquid pool is interior to be filled with some high hydroscopic resin particles, the terminal liquid Its opening end of pond is covered by breathable microporous film.
Arrow in legend indicate the micro-fluidic chip its in actual motion, by both ends 9,10 pressure differentials drive, The flow direction of its sample liquid stream.
Fig. 1 is depicted without the associate members such as the higher-order of oscillation electric signal generator.
The Micropump 14 can customize to specialized factory.
Its connected mode with various micro-fluidic chip of various Micropump is known.
Described its main body of hinge-type fixture can simply be changed a social system using commercially available hinge;Can also be to hardware processing factory Customization.
Involved miniature ultrasonic transducer units 5 are commercially available;It can also be customized to ultrasonic transducer producer.
Involved higher-order of oscillation electric signal transmission cable 4 is commercially available;Can also be special to ultrasonic transducer producer or cable Industry producer customizes.
Involved higher-order of oscillation electric signal generator market has the product close to needs commercially available;It can also determine to relevant manufacturers System.
The Micropump both can be the Micropump of external form;The Micropump can also do into or say the embedded micro-fluidic chip The Micropump of the built in version of internal its sample introduction end structure position or the sample introduction end Near-neighbor Structure position, its basic structure key element with it is outer The Micropump for putting form is identical.Micropump in legend is the Micropump of external form.
Each working electrode in this example structure and can be respectively via each special electricity to electrode and reference electrode Cable or say is being got lines crossed respectively with the corresponding cable interface of the multiple tracks electrochemical workstation as annex or saying interface connection of getting lines crossed.
The structural form of this case hinge-type fixture is not limited to the structural form in the legend.

Claims (10)

1. a kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate, the structure of the device includes leading to more Road micro-fluidic chip, the structure of the micro-fluidic chip include being bonded to each other the substrate and cover plate of installing together, the substrate and Cover plate is plate object or tablet, and that face towards the cover plate of the substrate is contained via mould pressing process or etching technics shape Into channel structure, be bonded to each other the substrate that is installed together and be built into the miniflow containing pipeline configuration jointly with the cover plate Chip is controlled, the locations of structures of the pipeline is located at the juncture area that the substrate is bonded to each other with the cover plate, the both ends difference of the pipeline It is connected with the sample introduction end of the micro-fluidic chip and terminal, the sample introduction end is the injection end of the micro-fluidic chip sample solution, should Terminal is the terminal of sample solution flowing in its chip when the actual sample introduction of the micro-fluidic chip is tested, the terminal and the sample introduction end phase Mutually remote, between 3 centimetres and 10 centimetres, the terminal contacts with terminal liquid pool for the distance between the terminal and the sample introduction end Together, the profile of its structure of the terminal liquid pool is in pond shape, pit shape or cup-shaped, and the terminal liquid pool is used to receive via the pipeline stream The sample solution of terminal is moved, is sequentially equiped with working electrode on diverse location in the pipeline and to electrode and reference electricity Pole, the working electrode are resisted by conductive electrode and the hypotype swine flu specificity that embedded being attached on the conductive electrode The gold size sensitive membrane of body is formed, and the construction of the pipeline is in parallel construction, and the pipeline in parallel construction is by three laterals Parallel connection is formed, and the quantity of the working electrode is three, and the installation position of three working electrodes is located at described three points respectively In branch pipe(tube), and, the specific antibody in its top layer gold size sensitivity membrane structure of three working electrodes is to hypotype pig respectively Three kinds of hypotype swine flu antibody materials that influenza antigens can be specifically bound, three kinds of antibody materials are hypotype swine flu spy respectively Heterogenetic antibody H1N1、H3N2And H1N2, its material of the working electrode is gold material or thermally decomposes conducting polymer material, described Sheet or thread is presented in working electrode its pattern, it is characterised in that its material of the substrate is dimethyl silicone polymer material, the base Its surface of piece is the surface of primary form, the surface of the primary form its be intended to refer to and do not pass through any surface chemical modification Or the surface of the primary form of the material of any surface chemical modification, the structure of the device also include hinge-type fixture, the conjunction Page fixture its appearance profile likeness in form hinge, the hinge-type fixture by two hinges being mutually hinged and through this two One fastening screw of individual hinge and one match with the fastening screw and are used for hand with what the fastening screw connected together The nut of dynamic fastening and hand break loose is formed, and two hinges of the hinge-type fixture are respectively mutually drawn close with its tip and to clamp this micro- Fluidic chip, the tip are positioned in the locations of structures of the neighbouring terminal of the micro-fluidic chip, and at least in one Fixation is attached in the individual hinge and is equiped with miniature ultrasonic transducer units, and, higher-order of oscillation electric signal transmission cable, the high frequency One end of vibration electric signal transmission cable links together with the miniature ultrasonic transducer units;The hinge-type fixture provides one The function of facilitating the device to disassemble;Its major function of the miniature ultrasonic transducer units is in the actual sample introduction test of micro-fluidic chip When, using the sample introduction end and the distance between the terminal and the miniature ultrasonic transducer units installation position difference and its The difference on ultrasonic intensity experienced, its interfacial tension of sample introduction end described in induced synthesis and its interfacial tension of the terminal Between difference, interfacial tension difference between the micro-fluidic chip both ends can between the both ends of the micro-fluidic chip shape Into pressure gap, the pressure gap can drive sample solution to the end flow;The poly dimethyl silicon that is soft and having elasticity Its function of the substrate of oxygen alkane material includes, with its property to the strong absorption of ultrasonic wave, absorbing ultrasonic wave strongly, and by This realizes the fast express delivery of ultrasonic intensity within micro-fluidic chip terminal to the limited short distance between the sample introduction end Subtract;And Micropump, the Micropump are connected with the sample introduction end, the Micropump is built-in Micropump or external Micropump;The function of the Micropump It is interfacial tension difference its band come with the mechanicalness of Micropump pumping strength between the both ends of ultrasonic wave induction The driving force come is supported mutually, adjusts mutually, is mutually coupled, and one driving sample liquid stream is pooled in a manner of Collaboration The strength flowed to the terminal direction;Described its thickness of cover plate and substrate is between 1.0 millimeters and 5.0 millimeters;And Many silica dioxide granules, many silica dioxide granules are filled in the pipeline, and its tube chamber of the pipeline is permitted by this More silica dioxide granules are filled up, and its particle size range of the silica dioxide granule is between 10 microns and 200 microns, the dioxy Silicon carbide particle is that silica crystalline particles, silica glass granule or silica composition its shared percentage by weight exists More than 80% inorganic glass particles, the terminal liquid pool is interior to be filled with some high hydroscopic resin particles, its opening of the terminal liquid pool End is covered by breathable microporous film.
2. a kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate according to claim 1, Characterized in that, it is capillary channel that the pipeline, which includes the lateral,.
3. a kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate according to claim 1, Characterized in that, the thermal decomposition conducting polymer is the conduction formed by polyimides or polyacrylonitrile after anoxybiotic is heat-treated Property material.
4. a kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate according to claim 1, Characterized in that, the width or diameter of the working electrode be between 0.1 micron to 2000 microns, and, the work electricity The length of pole is between 1 micron to 15000 microns.
5. a kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate according to claim 1, Characterized in that, the thickness of the gold size sensitive membrane is between 10 nanometers and 200 nanometers.
6. a kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate according to claim 1, Characterized in that, the cover plate its material in structure is dimethyl silicone polymer material.
7. a kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate according to claim 1, Characterized in that, the Micropump is miniature piezoelectric pump, miniature peristaltic pump or miniature air driven pump.
8. a kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate according to claim 1, Characterized in that, its particle size range of the silica dioxide granule is between 100 microns and 200 microns, its internal diameter model of the pipeline Enclose between 500 microns and 1000 microns.
9. a kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate according to claim 1, Characterized in that, the structure of the device also includes higher-order of oscillation electric signal generator, the higher-order of oscillation electric signal transmission cable Its other end is connected with the higher-order of oscillation electric signal generator.
10. a kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate according to claim 1, Characterized in that, its specified ultrasonic wave transmission power of the miniature ultrasonic transducer units, between 5 milliwatts and 9000 milliwatts, this is micro- The frequency of its ultrasonic wave operationally launched of type ultrasonic transducer is between 100KHz and 12MHz.
CN201610791717.1A 2016-08-23 2016-08-23 A kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate Pending CN107754951A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610791717.1A CN107754951A (en) 2016-08-23 2016-08-23 A kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610791717.1A CN107754951A (en) 2016-08-23 2016-08-23 A kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate

Publications (1)

Publication Number Publication Date
CN107754951A true CN107754951A (en) 2018-03-06

Family

ID=61263838

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201610791717.1A Pending CN107754951A (en) 2016-08-23 2016-08-23 A kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate

Country Status (1)

Country Link
CN (1) CN107754951A (en)

Similar Documents

Publication Publication Date Title
CN107552113A (en) A kind of substrate material is PDMS cholera diagnosis micro flow control chip device
CN107486257A (en) The driving cholera diagnosis device easily-disassembled and recyclable with component
CN107754953A (en) A kind of AIDS diagnosis multi-channel chip device for making substrate with PDMS
CN107754954A (en) Make the hypotype swine flu detection Multichannel device of substrate with cheap hydrophobic material
CN107754951A (en) A kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate
CN107754957A (en) A kind of hypotype swine flu detection micro flow control chip device comprising hydrophobic substrate
CN107552103A (en) A kind of hypotype swine flu detection micro flow control chip device using strong hydrophobic substrate
CN107754934A (en) The hypotype swine flu detection means for the dual drive CGCM conveniently disassembled
CN107754929A (en) The hypotype swine flu detection device for the dual drive CGCM that can be disassembled rapidly
CN107561278A (en) Multichannel micro-fluidic device is used in a kind of strong hydrophobic cholera diagnosis of substrate of its chip
CN107754959A (en) Detect a variety of hypotype swine flu dual drive CGCM micro flow control chip devices
CN107754933A (en) A kind of dimethyl silicone polymer makees the controller used in syphilis diagnosis micro flow control chip device of substrate
CN107754950A (en) A kind of multichannel syphilis diagnosis micro flow control chip device
CN107754928A (en) Coupling dual drive detects the micro flow control chip device of a variety of hypotype swine flus simultaneously
CN107552112A (en) A kind of dimethyl silicone polymer makees the controller used in syphilis diagnosis micro flow control chip device of substrate
CN107486260A (en) The hypotype swine flu detection device for the dual drive CGCM that can be disassembled rapidly
CN107486256A (en) The hypotype swine flu detection means for the dual drive CGCM conveniently disassembled
CN107754921A (en) A kind of substrate material is PDMS cholera diagnosis micro flow control chip device
CN107754926A (en) It is capable of the AIDS diagnosis device of the dual drive CGCM of rapid disassembling
CN107754927A (en) A kind of AIDS diagnosis for being related to hydrophobic substrate multichannel micro-fluidic chip device
CN107754952A (en) A kind of easily-disassembled cholera diagnosis micro fluidic device of dual drive CGCM
CN107754935A (en) The controller used in syphilis diagnosis device of dual drive CGCM based on easily-disassembled framework
CN107457009A (en) Multichannel and the cholera diagnosis micro flow control chip device of dual drive coupling running
CN107764876A (en) The driving cholera diagnosis device easily-disassembled and recyclable with component
CN107649211A (en) A kind of easily-disassembled cholera diagnosis micro fluidic device of dual drive CGCM

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20180306

WD01 Invention patent application deemed withdrawn after publication