Claims
- 1. A method for producing an implant for replacing defective bone parts, the implant having a predetermined shape, which comprises the steps of:
- i) shaping a non-foamed, non-porous, glass ionomer cement which comprises:
- (a) an aluminum fluorosilicate glass which forms by acid decomposition, metal ions causing cross-linking of (b),
- (b) a polymer containing acid groups selected from the group consisting of sulphonic, phosphonic, and carboxylic acid, and
- (c) water, into said implant intra-operatively or extracorporally, and
- ii) curing the shaped part extracorporally.
- 2. A method of claim 1, which further comprises iii) implanting the cured part into the body.
- 3. A method of claim 1, wherein step i) takes place intra-operatively.
- 4. A method of claim 1, wherein step i) takes place extracorporally.
- 5. A method of claim 2, wherein step i) takes place intra-operatively.
- 6. A method of claim 2, wherein step i) takes place extracorporally.
- 7. A method of claim 1, wherein the cement further comprises a chelate-former (d).
- 8. A method of claim 1, wherein (a) comprises a glass powder selected from the group consisting of the oxides of calcium, magnesium, lanthium, strontium, and mixtures of at least two of these metals.
- 9. A method of claim 1, wherein (a) comprises an aluminum fluorosilicate glass powder selected from the group consisting of calcium and strontium containing
- 20 to 60 wt-% SiO.sub.2,
- 10 to 50 wt-% Al.sub.2 O.sub.3,
- 0to 40 wt-% CaO,
- 0 to 40 wt-% SrO,
- 1 to 40 wt-% F,
- 0 to 10 wt-% Na.sub.2 O, and
- 0 to 10 wt%-% P.sub.2 O.sub.5,
- with a minimum of 1 wt-% of CaO if said powder is said calcium aluminum fluorosilicate or with a minimum of 1 wt-% SrO if said powder is said strontium aluminum fluorosilicate, and
- (b) comprises a polycarboxylic acid having an average molecular weight of more than 500 and is present in a concentration of 5 to 50 wt-% related to constituent (a).
- 10. A method of claim 1, wherein component (a) comprises:
- 25 to 50 wt-% SiO.sub.2,
- 10 to 40 wt-% Al.sub.2 O.sub.3,
- 0 to 35 wt-% CaO,
- 0 to 35 wt-% SrO,
- 5 to 30 wt-% F,
- 0 to 8 wt-% Na.sub.2 O, and
- 1 to 10 wt%-% P.sub.2 O.sub.5,
- with a minimum of 10 wt-% CaO if said powder is said calcium aluminum fluorosilicate or with a minimum of 10 wt-% SrO if said powder is said strontium aluminum fluorosilicate.
- 11. A method of claim 10, wherein component (a) comprises:
- 25 to 45 wt-% SiO.sub.2,
- 20 to 40 wt-% Al.sub.2 O.sub.3,
- 10 to 30 wt-% CaO,
- 10 to 30 wt-% F,
- 1 to 8 wt-% Na.sub.2 O, and
- 1to 10 wt%-% P.sub.2 O.sub.5.
- 12. A method of claim 8, wherein the average grain size of the glass powder is 1 to 20 .mu.m and wherein the maximum grain size of the glass powder is 150 .mu.m.
- 13. A method of claim 1, wherein component (b) has an average molecular weight of 1,000 to 20,000.
- 14. A method of claim 1, wherein component (b) is selected from the group consisting of polymaleic acid, polyacrylic acid, polyitaconic acid, maleic-itaconic acid copolymers, acrylic-itaconic acid copolymers, acrylicmaleic acid copolymers, and mixtures of at least two of these polymers.
- 15. A method of claim 1, wherein said cement further comprises an additive selected from the group consisting of stabilizers, disinfectants, pigments, x-ray contrast media, fillers other than the previously recited additives, and mixtures of at least one of these additives.
- 16. A method of claim 7, wherein the chelate former is tartaric acid.
- 17. A method of claim 9, wherein component (a) further comprises 0 to 20 wt. % of oxides of metals selected from the group consisting of B, Bi, Zn, Mg, Sm, Ti, Zr, La, trivalent lanthanides other than said Sm, K, W, Ge, and mixtures of at least one of these oxides.
- 18. A method of claim 4, wherein said shaping comprising one or both of grinding and milling.
- 19. A method of claim 1, wherein said implant is a prosthesis for an ear, cranium, larynx, or jaw bone.
- 20. A method of claim 4, wherein said implant is a prosthesis for an ear, cranium, larynx, or jaw bone.
Priority Claims (1)
Number |
Date |
Country |
Kind |
39 07 663.6 |
Mar 1989 |
DEX |
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Parent Case Info
This application is a division of application Ser. No. 07/862,204, filed Apr. 2, 1992, now U.S. Pat. No. 5,314,474, which is a continuation of Ser. No. 07/489,826 filed Mar. 9, 1990, now abandoned.
US Referenced Citations (15)
Foreign Referenced Citations (8)
Number |
Date |
Country |
931294 |
Jul 1973 |
CAX |
0241277 |
Oct 1087 |
EPX |
0023013 |
Jan 1981 |
EPX |
0024056 |
Feb 1981 |
EPX |
2061513 |
Jun 1971 |
DEX |
2319715 |
Oct 1973 |
DEX |
2905183.C3 |
Feb 1979 |
DEX |
3248357 |
Jul 1984 |
DEX |
Non-Patent Literature Citations (2)
Entry |
Council on Dental Materials and Devices, State Report on Glass Ionomer Cets, JADA, vol. 99, pp. 221-226, Aug. 1979. |
Kent et al., The Properties of a Glass Ionomer Cement, British Dental Journal, 1973, vol. 135, pp. 322-326. |
Divisions (1)
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Number |
Date |
Country |
Parent |
862204 |
Apr 1992 |
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Continuations (1)
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Number |
Date |
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Parent |
489826 |
Mar 1990 |
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