WO2004108095A1 - Self hardening glass carbomer composition - Google Patents
Self hardening glass carbomer composition Download PDFInfo
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- WO2004108095A1 WO2004108095A1 PCT/NL2004/000396 NL2004000396W WO2004108095A1 WO 2004108095 A1 WO2004108095 A1 WO 2004108095A1 NL 2004000396 W NL2004000396 W NL 2004000396W WO 2004108095 A1 WO2004108095 A1 WO 2004108095A1
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- WIPO (PCT)
- Prior art keywords
- glass
- composition according
- acid solution
- self hardening
- carbomer composition
- Prior art date
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Classifications
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61L—METHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
- A61L24/00—Surgical adhesives or cements; Adhesives for colostomy devices
- A61L24/0047—Composite materials, i.e. containing one material dispersed in a matrix of the same or different material
- A61L24/0073—Composite materials, i.e. containing one material dispersed in a matrix of the same or different material with a macromolecular matrix
- A61L24/0084—Composite materials, i.e. containing one material dispersed in a matrix of the same or different material with a macromolecular matrix containing fillers of phosphorus-containing inorganic compounds, e.g. apatite
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K6/00—Preparations for dentistry
- A61K6/15—Compositions characterised by their physical properties
- A61K6/17—Particle size
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K6/00—Preparations for dentistry
- A61K6/30—Compositions for temporarily or permanently fixing teeth or palates, e.g. primers for dental adhesives
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K6/00—Preparations for dentistry
- A61K6/70—Preparations for dentistry comprising inorganic additives
- A61K6/71—Fillers
- A61K6/77—Glass
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K6/00—Preparations for dentistry
- A61K6/80—Preparations for artificial teeth, for filling teeth or for capping teeth
- A61K6/849—Preparations for artificial teeth, for filling teeth or for capping teeth comprising inorganic cements
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K6/00—Preparations for dentistry
- A61K6/80—Preparations for artificial teeth, for filling teeth or for capping teeth
- A61K6/884—Preparations for artificial teeth, for filling teeth or for capping teeth comprising natural or synthetic resins
- A61K6/887—Compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds
- A61K6/889—Polycarboxylate cements; Glass ionomer cements
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K6/00—Preparations for dentistry
- A61K6/80—Preparations for artificial teeth, for filling teeth or for capping teeth
- A61K6/884—Preparations for artificial teeth, for filling teeth or for capping teeth comprising natural or synthetic resins
- A61K6/891—Compounds obtained otherwise than by reactions only involving carbon-to-carbon unsaturated bonds
- A61K6/896—Polyorganosilicon compounds
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61L—METHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
- A61L27/00—Materials for grafts or prostheses or for coating grafts or prostheses
- A61L27/02—Inorganic materials
- A61L27/10—Ceramics or glasses
-
- C—CHEMISTRY; METALLURGY
- C03—GLASS; MINERAL OR SLAG WOOL
- C03C—CHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
- C03C14/00—Glass compositions containing a non-glass component, e.g. compositions containing fibres, filaments, whiskers, platelets, or the like, dispersed in a glass matrix
- C03C14/008—Glass compositions containing a non-glass component, e.g. compositions containing fibres, filaments, whiskers, platelets, or the like, dispersed in a glass matrix the non-glass component being in molecular form
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- C—CHEMISTRY; METALLURGY
- C03—GLASS; MINERAL OR SLAG WOOL
- C03C—CHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
- C03C3/00—Glass compositions
- C03C3/04—Glass compositions containing silica
- C03C3/076—Glass compositions containing silica with 40% to 90% silica, by weight
- C03C3/11—Glass compositions containing silica with 40% to 90% silica, by weight containing halogen or nitrogen
- C03C3/112—Glass compositions containing silica with 40% to 90% silica, by weight containing halogen or nitrogen containing fluorine
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- C—CHEMISTRY; METALLURGY
- C03—GLASS; MINERAL OR SLAG WOOL
- C03C—CHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
- C03C4/00—Compositions for glass with special properties
- C03C4/0007—Compositions for glass with special properties for biologically-compatible glass
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61L—METHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
- A61L2430/00—Materials or treatment for tissue regeneration
- A61L2430/02—Materials or treatment for tissue regeneration for reconstruction of bones; weight-bearing implants
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T428/00—Stock material or miscellaneous articles
- Y10T428/29—Coated or structually defined flake, particle, cell, strand, strand portion, rod, filament, macroscopic fiber or mass thereof
- Y10T428/2982—Particulate matter [e.g., sphere, flake, etc.]
- Y10T428/2991—Coated
- Y10T428/2993—Silicic or refractory material containing [e.g., tungsten oxide, glass, cement, etc.]
Definitions
- the present invention relates to a glass carbomer cement having improved properties, a method for preparing said glass carbomer cement and the use of said glass carbomer cement in clinical and dental applications including high stress applications, e.g. tooth restoration, dentine replacement, crown core build-ups, i.e. as bone and dental cement, and industrial applications.
- high stress applications e.g. tooth restoration, dentine replacement, crown core build-ups, i.e. as bone and dental cement, and industrial applications.
- the calcium aluminium fluorosilicate glass powder according to US 4.376.835 has a reduced water sensitivity during and after the setting reaction and is used in a self-hardening glass ionomer cement comprising an aqueous mixture of said calcium aluminium fluorosilicate glass powder, a polycarboxylic acid and a chelating agent, wherein the polycarboxylic acid catalyses the setting or hardening reaction of the calcium aluminium fluorosilicate glass powder and the chelating agent accelerates and improve the setting or hardening reaction.
- US 5.063.257 addresses for example the disadvantages of some glass ionomer cements known in the art.
- One of the most important disadvantages of these materials is that the setting or hardening reaction is difficult to control thereby leading to cements that are embrittled at the surface and therefore have a reduced strength.
- US 5.063.257 provides a solution for this problem by employing a glass ionomer cement composition comprising a fluorosilicate glass powder, a polymer of an , ⁇ -unsaturated carboxylic acid, e.g. poly(acrylic acid), a polymerisable organic compound having unsaturated carbon-carbon bonds, a polymerisation catalyst, water, a surface active agent and a reducing agent.
- a glass ionomer cement composition comprising a fluorosilicate glass powder, a polymer of an , ⁇ -unsaturated carboxylic acid, e.g. poly(acrylic acid), a polymerisable organic compound having unsaturated carbon-carbon bonds, a poly
- the setting or hardening of this composition occurs by the usual neutralisation reactions of the fluorosilicate glass powder as well as polymerisation reactions of the unsaturated groups present in the polymer of an ⁇ , ⁇ -unsaturated carboxylic acid and the polymerisable organic compound thereby giving a glass ionomer cement that is far less sensitive to water at the initial stage of setting or hardening.
- the fluorosilicate glass powder is pre-treated with an ethylenically unsaturated alkoxysilane, e.g. vinyltris( ⁇ -methoxyethoxy)silane.
- the glass ionomer cements known from the prior art still suffer from several disadvantages.
- the strength, stiffness and hardness of the glass ionomer cements according to the prior art is often insufficient.
- the surface of the known cements - when hardened - are also not very smooth with the result that, when e.g. employed as dental filing material, they are difficult to polish.
- Another disadvantage of the known glass ionomer cements is that the hardened cement has a rather high solubility which causes wear of the dental filling.
- the hardened cements also show a rather poor adherence to bone tissue. Consequently, there is still a need for improved glass ionomer cements that do suffer from these disadvantages.
- the glass ionomer compositions according to the prior art are in particular inferior with respect to sensitivity towards abrasion and aesthetic properties. Moreover, they often show insufficient strength. It is therefore an object of the invention to provide a glass ionomer composition (in the description reference is in general made to glass carbomer composition but both terms may be used interchangeably) that - when hardened - has improved properties with respect to the glass ionomers known in the art.
- the glass carbomer composition according to the invention is manufactured from commonly available materials and it shows - either in the unhardened state or the hardened state - even a better performance when compared to the glass ionomer compositions known from the prior art.
- the glass carbomer compositions according to the invention have for example good toughness and strength and excellent fluoride release.
- the glass carbomer compositions according to the invention do not show shrinkage or expansion, an essential property for providing fillings for cavities having high strength and long durability.
- the glass carbomer composition according to the present invention has - when hardened - in particular a liigher hardness, a lower sensitivity towards abrasion and wear, a greater stiffness, a lower solubility, a smoother surface, a better colourfastness, a better adherence to e.g. bone tissue and a lower water sensitivity.
- Another advantage of the glass carbomer composition according to the invention is that when hardened it can be polished much easier in comparison with the known glass ionomer compositions.
- Further advantages of the glass carbomer composition according to the present invention is that the unhardened glass carbomer composition shows a better fluidity so that cavities are much easier to fill, a better processability and a shorter hardening time.
- the glass carbomer composition according to the present is also much easier to use as sealing material. All these advantages are apparent from preliminary clinical trials.
- the present invention therefore relates to a self hardening glass carbomer composition obtainable by treating a fluorosilicate glass powder with: (a) a poly(dialkylsiloxane) having terminal hydroxyl groups, wherein the alkyl groups contain 1 to 4 carbon atoms,
- the fluorosilicate glass powder particles employed in this invention are generally depleted of calcium at their surface such that the quotient of the atomic ratio Si/Ca at the surface of the powder particles and the atomic ratio Si/Ca in the core region is at least 2.0, preferably at least 3.0, and most preferably at least 4.0.
- the calcium content of the powder particles of the invention increases asymptotically from the surface to the core region.
- the depth of the depletion zone depends on the conditions given in each individual case. However, the depletion zone preferably extends at least to a depth of about 10 nm, more preferably to at least about 20 nm, and most preferably to at least about 100 nm. These ranges are particularly suited for use of the fluorosilicate glass powders in dentistry. For other purposes, e.g., for use in bone cements, the depletion zone may also be deeper and may be 200 to 300 nm, for example.
- the fluorosilicate glass powders are produced by surface treatment of glass powders having a composition corresponding to the core region of the powders. Upon surface treatment the number of silicon atoms per unit volume remains substantially constant. The actual change in the absolute number of atoms per unit volume of other types of atoms is therefore obtained by forming the quotient of the relative atom proportion with the percentage silicon proportion. The quotient of the atomic ratio Si/Ca at the surface and the atomic ratio Si/Ca in the core region therefore constitutes a useful value to characterise the fluorosilicate glass powders.
- the surface measurement to determine Ca depletion of the glass powders of the invention is suitably carried out by photo electron spectroscopy for chemical analysis (ESCA).
- ESA photo electron spectroscopy for chemical analysis
- the fluorosilicate glass powders have an average particle size (weight average) of at least 0.5 ⁇ m, preferably at least 1.0 ⁇ m, and most preferably at least 3.0 ⁇ m.
- the average particle size (weight average) is 1.0 to 20.0 ⁇ m, preferably 3.0 to 15.0 ⁇ m, most preferably 3.0 to 10.0 ⁇ m.
- the particles have a maximum particle size of 150 ⁇ m, preferably 100 ⁇ m, especially 60 ⁇ m.
- the maximum particle size is 25 ⁇ m, preferably 20 ⁇ m. In order to achieve good mechanical properties a not excessively narrow particle size distribution is favourable, as usual, which is achieved, for example, by conventional grinding and classifying of the coarse.
- the fluorosilicate glass powders are prepared from glass powders having the average composition of the core region of the powders of the invention. To this end the glass powders described, for example, in DE A 2.061.513 and in Table I are suitable.
- the glass powders employed as starting materials are obtained as usual by fusing the starting components together at temperatures above 950°C, quenching, and grinding.
- the starting components may be, for example, the compounds stated in DE A 2.061.513 in suitable quantitative ranges.
- the thus obtained powders are then subjected to a surface treatment.
- the powders of the invention are obtainable, for example, by removal of Ca by suitable chemical agents.
- the starting glass powders are treated on the surface with acid, preferably at room temperature.
- acid preferably at room temperature.
- substances containing acidic groups are employed, preferably substances forming soluble calcium salts, Sparing water- solubility of the respective calcium salts may be compensated to a certain degree by a large amount of liquid per unit of powder.
- the reaction period varies between a few minutes and several days, depending on the strength and concentration of the acid employed.
- hydrochloric sulfuric, nitric, acetic, propionic and perchloric acid may be used.
- the acids are employed at a concentration of 0.01 to 10% by weight, preferably from 0.05 to 3% by weight.
- the powders are separated from the solution and thoroughly washed to leave substantially no soluble calcium salts on the surface of the powder particles.
- the powder is dried, preferably above 70°C, and screened to the desired particle size ranges. The stronger the acid employed and the longer a given acid acts on the powder the longer will be the processing period after mixing with the mixing fluid.
- the favourable surface character of the powders permits the use of an especially high powder/fluid ratio in the cement mix resulting in high strength values of the hardened material.
- the possibility of using a particularly reactive mixing fluid has the same effect.
- the processing period of a cement of the invention may be tailored to meet the user's requirements. The length of the processing period hardly influences the subsequent hardening period, so that also upon long processing periods rapid setting and early water insensitivity occurs.
- the glass powders may be mixed, to form dental cements or bone cements, with the conventional aqueous polycarboxylic acid solutions as described, for example, in DE A 2.061.513, DE A 2.439.882 and DE A 2.101.889.
- Suitable polycarboxylic acids are polymaleic acid, polyacrylic acid and mixtures thereof, or copolymers, especially maleic acid/acrylic acid copolymers and/or acrylic acid/itaconic acid copolymers. It is self-evident that with the use of an extremely reactive glass powder a less reactive polycarboxylic acid will be employed in order to obtain a satisfactory hardening characteristic.
- chelating agents may be added during mixing, in a manner known from DE A 2.319.715.
- the glass powder may also be pre-mixed in the corresponding ratio with the dry powdered polycarboxylic acid, as the solid substances do not undergo reaction with each other.
- water is used as mixing fluid, preferably an aqueous solution of a chelating agent together with conventional additives such as bacteriostatic agents, if appropriate.
- the powders may be used in pre-dosaged form.
- the glass powder is metered out in plastic containers. Then the cement can either be mixed mechanically within said plastic capsules, or the container may be emptied and the mix prepared by hand.
- the aqueous polycarboxylic acid solution in such a case is metered, for example, with a dripping bottle or with a syringe.
- the use of the powder of the invention in so- called shaker capsules, e.g., corresponding to DE A 2.324.296, is suitable.
- a predetermined quantity of powder is held in readiness in a so-called main compartment, while the fluid is contained in a separate cushion beneath a lateral clip. By exerting pressure on said clip the fluid is sprayed through a bore into the main compartment and is then available for mechanical mixing.
- the pure glass powder may be replaced by a mixture of glass powder and dry polycarboxylic acid in predetermined quantities.
- the fluid component is then water or an aqueous solution of a chelating agent.
- the use of the mixture of glass powder and dry polycarboxylic acid is especially advantageous if said mixture is pelletised.
- the dry polycarboxylic acid is used in finely divided form after removal of coarse portions.
- the compacting pressure must be selected such that after the addition of the mixing fluid (water or aqueous tartaric acid solution, for example), the pellets can still be readily worked into a cement while, on the other hand, they possess sufficient mechanical stability for transportation. Pellets made in this way permit especially simple mixing into a cement paste after brief dissolution, e.g., in the corresponding amount of tartaric acid solution.
- the mixing fluid may be added, for example, from a drip bottle or from a syringe.
- the poly(dialkylsiloxane) may be linear or cyclic. It may further be a blend of different poly(dialkylsiloxane)s, e.g. a blend of a poly(dimethylsioxane) of high kinematic viscosity and a poly(dimefhylsiloxane) of low kinematic viscosity. It is further preferred that the alkyl groups of the poly(dialkylsiloxane) are methyl groups.
- the kinematic viscosity is preferably in the range of about 1 cSt to about 100.000 cSt at 25°C [about 1 to about 100.000 mm 2 /s], preferably about 100 cSt to about 10.000 cSt at 25°C [about 100 to about 10.000 mm 2 /s], even more preferably about 500 cSt to about 5000 cSt at 25°C [about 100 to about 10.000 mm 2 /s].
- the best results are obtained with a viscosity of about 1000 cSt at 25°C [about 1000 mm 2 /s].
- the particles of the fluorosilicate glass powder have preferably an average size of about 0.5 ⁇ m to about 200 ⁇ m, more preferably about 3 ⁇ m to about 150 ⁇ m, even more preferably about 3 ⁇ m to about 100 ⁇ m and in particular about 20 ⁇ m to about 80 ⁇ m.
- the aqueous acid solution comprises an inorganic acid or an organic acid. It is even more preferred that the aqueous acid solution comprises an organic acid, wherein the organic acid is preferably a polymer, e.g. a polyacrylic acid. According to the invention, the aqueous acid solution has a pH in the range of 2 to 7.
- the present invention also relates to a process for the preparation of a self hardening glass carbomer composition.
- a fluorosilicate glass powder is treated with in subsequent order: (a) a poly(dialkylsiloxane) having terminal hydroxyl groups, wherein the alkyl groups contain 1 to 4 carbon atoms,
- the present invention also relates to the use of the self hardening glass carbomer composition according to the invention as a (temporarily) dental filling material, a denting bonding cement and a bone cement.
- the self hardening glass carbomer composition according to the invention can also be used as bone replacing material in orthopaedic surgery, e.g. as implants or coating materials for joint cavities.
- compositions were prepared from the following ingredients:
- compositions according to Example 1 were evaluated in an in-vitro wear test in the ACT A- wear machine which is a three body wear system designed to simulate the wear that occurs in the oral cavity (cf. de Gee et al., 1994, 1996).
- Two reference materials LFMC and KPFA; KPFA is KetacMolar® from 3M ESPE
- LFMC and KPFA Two reference materials
- KPFA KetacMolar® from 3M ESPE
- Both wheels are situated in slurry of rice flour and husks of while millet spray in a buffer solution.
- the food is pressed between the wheels creating a wear track into the test samples, leaving an untouched area at both sides of the reference for the determination of the wear.
- the material lost by wear was determined b evaluating 10 samples with a profilometer.
- the samples were prepared in the first wheel (size approximately 10 x 15 x 3 mm).
- the compositions according to Example 1 were stored in a 100% relative humidity oven at 37°C. After being set, the samples were glued on the first wheel by using a cyanoacrylate glue. Thereafter, the sample wheel was wet ground until a uniform cylindrical outer surface was obtained.
- the wear grinding was performed in the wear testing machine with carburondrum and diamond wheels up to a grit of 1000. During this procedure, a layer of 100 ⁇ m was removed from the outer surface. Subsequently, the wear test was started which was conducted at 37°C and pH 7.0. Wear data were obtained after 1 day, 4 days and 8 days. The data obtained are shown in Table 2, wherein a rating of below 60 is acceptable wherein lower data equals a higher hardness.
- solubility tests were performed.
- the test was performed as follows. The weight of hardened samples having a diameter of about 0.4 to about 0.6 cm and having a thickness of about 1 to about 1.5 mm were was determined as reference. In the test, these samples were immersed in water at various pH values wherein the pH was adjusted with citric acid. A pH value of 2.5 was tested since it simulates the pH that can occur in between molars. The test was performed over a period of about 15 days. At several time intervals the weight of the test samples was determined wherein a greater weight loss indicated a liigher solubility of the material. The data are expressed as % solubility (calculated on the original weight and the weight loss at the indicated periods) and are shown in Table 3.
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- Oral & Maxillofacial Surgery (AREA)
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- Inorganic Chemistry (AREA)
- Chemical Kinetics & Catalysis (AREA)
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- Plastic & Reconstructive Surgery (AREA)
- Geochemistry & Mineralogy (AREA)
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Abstract
Description
Claims
Priority Applications (8)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US10/559,900 US20060217455A1 (en) | 2003-06-05 | 2004-06-03 | Self hardening glass carbomer composition |
| AU2004244922A AU2004244922A1 (en) | 2003-06-05 | 2004-06-03 | Self hardening glass carbomer composition |
| JP2006508557A JP4851320B2 (en) | 2003-06-05 | 2004-06-03 | Self-hardening glass carbomer composition |
| BRPI0410949-0A BRPI0410949B1 (en) | 2003-06-05 | 2004-06-03 | Self-hardening Glass Ionomer Cement Composition, Process for Preparation, and Use |
| CA2527661A CA2527661C (en) | 2003-06-05 | 2004-06-03 | Self hardening glass carbomer composition |
| EP04748628A EP1628625A1 (en) | 2003-06-05 | 2004-06-03 | Self hardening glass carbomer composition |
| IL172347A IL172347A0 (en) | 2003-06-05 | 2005-12-04 | Self hardening glass carbomer composition |
| NO20055933A NO20055933L (en) | 2003-06-05 | 2005-12-14 | Self-curing composition of glass carbomer |
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US47590303P | 2003-06-05 | 2003-06-05 | |
| EP03076770 | 2003-06-05 | ||
| EP03076770.1 | 2003-06-05 | ||
| US60/475,903 | 2003-06-05 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2004108095A1 true WO2004108095A1 (en) | 2004-12-16 |
Family
ID=34923950
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/NL2004/000396 Ceased WO2004108095A1 (en) | 2003-06-05 | 2004-06-03 | Self hardening glass carbomer composition |
Country Status (10)
| Country | Link |
|---|---|
| US (1) | US20060217455A1 (en) |
| EP (1) | EP1628625A1 (en) |
| JP (1) | JP4851320B2 (en) |
| CN (1) | CN1809329A (en) |
| AU (1) | AU2004244922A1 (en) |
| BR (1) | BRPI0410949B1 (en) |
| CA (1) | CA2527661C (en) |
| RU (1) | RU2329032C2 (en) |
| WO (1) | WO2004108095A1 (en) |
| ZA (1) | ZA200509847B (en) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2005089700A1 (en) * | 2004-03-19 | 2005-09-29 | Stichting Glass For Health | Poly (dialkylsiloxane) for improving surface of dental fillings |
| WO2012005593A2 (en) | 2010-07-09 | 2012-01-12 | Stichting Glass For Health | Apatite compositions |
| US8722100B2 (en) | 2009-08-29 | 2014-05-13 | Dentosolve | Mineral trioxide aggregate (MTA) composition and use |
Families Citing this family (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN103743605A (en) * | 2013-12-17 | 2014-04-23 | 河海大学 | Carbomer gel medium for simulating rheological property of cement paste and preparation method thereof |
| CN103728166A (en) * | 2013-12-17 | 2014-04-16 | 河海大学 | Transparent mortar mixture simulating rheological property of cement mortar and preparation method of transparent mortar mixture |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4063001A (en) * | 1975-04-09 | 1977-12-13 | Ppg Industries, Inc. | Method of preparing acid resistant glass fibers |
| US4376835A (en) * | 1979-07-18 | 1983-03-15 | Espe Fabrik Pharmazeutischer Praparate Gmbh | Calcium depleted aluminum fluorosilicate glass powder for use in dental or bone cements |
| DE3248357A1 (en) * | 1982-12-28 | 1984-07-05 | ESPE Fabrik pharmazeutischer Präparate GmbH, 8031 Seefeld | POWDER-SHAPED DENTAL MATERIAL, METHOD FOR THE PRODUCTION THEREOF AND ITS USE |
| US5453456A (en) * | 1991-05-31 | 1995-09-26 | Minnesota Mining And Manufacturing Company | Treated fluoroaluminosilicate glass and cement thereof |
Family Cites Families (9)
| Publication number | Priority date | Publication date | Assignee | Title |
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| CA2055957A1 (en) * | 1990-12-18 | 1992-06-19 | Edwin R. Evans | Vinyl-containing, silanol-terminated silicone compositions for treatment of fillers |
| US5310563A (en) * | 1991-10-25 | 1994-05-10 | Colgate-Palmolive Company | Dental material and method for applying preventative and therapeutic agents |
| SE514686C2 (en) * | 1998-10-12 | 2001-04-02 | Doxa Certex Ab | Dimensional binder systems |
| WO2002011681A1 (en) * | 2000-08-07 | 2002-02-14 | S & C Polymer Silicon- und Composite-Spezialitäten GmbH | Adhesive fluoride varnish |
| US6613812B2 (en) * | 2001-01-03 | 2003-09-02 | 3M Innovative Properties Company | Dental material including fatty acid, dimer thereof, or trimer thereof |
| RU2197940C1 (en) * | 2001-08-09 | 2003-02-10 | Общество с ограниченной ответственностью "Радуга-Р" | Material for filling root canals of teeth |
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2004
- 2004-06-03 WO PCT/NL2004/000396 patent/WO2004108095A1/en not_active Ceased
- 2004-06-03 RU RU2005137705/15A patent/RU2329032C2/en not_active IP Right Cessation
- 2004-06-03 CN CNA2004800154589A patent/CN1809329A/en active Pending
- 2004-06-03 EP EP04748628A patent/EP1628625A1/en not_active Withdrawn
- 2004-06-03 AU AU2004244922A patent/AU2004244922A1/en not_active Abandoned
- 2004-06-03 BR BRPI0410949-0A patent/BRPI0410949B1/en not_active IP Right Cessation
- 2004-06-03 JP JP2006508557A patent/JP4851320B2/en not_active Expired - Fee Related
- 2004-06-03 CA CA2527661A patent/CA2527661C/en not_active Expired - Fee Related
- 2004-06-03 US US10/559,900 patent/US20060217455A1/en not_active Abandoned
- 2004-06-03 ZA ZA200509847A patent/ZA200509847B/en unknown
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| US4063001A (en) * | 1975-04-09 | 1977-12-13 | Ppg Industries, Inc. | Method of preparing acid resistant glass fibers |
| US4376835A (en) * | 1979-07-18 | 1983-03-15 | Espe Fabrik Pharmazeutischer Praparate Gmbh | Calcium depleted aluminum fluorosilicate glass powder for use in dental or bone cements |
| DE3248357A1 (en) * | 1982-12-28 | 1984-07-05 | ESPE Fabrik pharmazeutischer Präparate GmbH, 8031 Seefeld | POWDER-SHAPED DENTAL MATERIAL, METHOD FOR THE PRODUCTION THEREOF AND ITS USE |
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Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2005089700A1 (en) * | 2004-03-19 | 2005-09-29 | Stichting Glass For Health | Poly (dialkylsiloxane) for improving surface of dental fillings |
| US8722100B2 (en) | 2009-08-29 | 2014-05-13 | Dentosolve | Mineral trioxide aggregate (MTA) composition and use |
| WO2012005593A2 (en) | 2010-07-09 | 2012-01-12 | Stichting Glass For Health | Apatite compositions |
Also Published As
| Publication number | Publication date |
|---|---|
| CA2527661A1 (en) | 2004-12-16 |
| EP1628625A1 (en) | 2006-03-01 |
| US20060217455A1 (en) | 2006-09-28 |
| RU2005137705A (en) | 2006-06-10 |
| BRPI0410949A (en) | 2006-06-27 |
| RU2329032C2 (en) | 2008-07-20 |
| JP4851320B2 (en) | 2012-01-11 |
| CA2527661C (en) | 2014-07-29 |
| AU2004244922A1 (en) | 2004-12-16 |
| BRPI0410949B1 (en) | 2018-01-30 |
| CN1809329A (en) | 2006-07-26 |
| ZA200509847B (en) | 2007-03-28 |
| JP2006526616A (en) | 2006-11-24 |
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