IP Library Granted Patent US 10,646,616
Granted Patent B2
US 10,646,616 · App. 15/773,554 · Granted May 12, 2020

Method for manufacturing bone-regeneration material comprising biodegradable fibers by using electrospinning method

Inventors: Toshihiro Kasuga (Nagoya, JP); Yasutoshi Nishikawa (Yokohama, JP)
Assignees: National University Corporation Nagoya Institute of Technology; Orthorebirth Co., Ltd.
A61L27/18A61L27/12A61L27/46A61L27/54A61L27/56A61L27/58B29B7/845C08J3/201D01D1/02D01D5/0038D01D5/0046D01D5/08D01F1/02D01F1/10D01F6/62D01F6/625A61L2300/412A61L2400/06A61L2400/12A61L2430/02B29B2013/005C08K2003/325D10B2331/041D10B2401/12D10B2509/00D10B2509/06
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Quick Facts
Patent No.
US 10,646,616
App. No.
15/773,554
Granted
May 12, 2020
Kind
B2
Abstract

A bone-regeneration material that contains calcium phosphate particles in biodegradable fibers of PLGA manufactured by electrospinning. A PLGA resin is heated in a kneader until the resin viscosity becomes 10 2 to 10 7 Pa·s. A powder of calcium phosphate fine particles is added while the blade is rotated. The mixture is kneaded by continuous rotation of the blade in the heated state to disperse the calcium phosphate fine particles to obtain a composite having calcium phosphate fine particles dispersed in the PLGA resin. The composite is dissolved by a solvent, and the PLGA resin is completely dissolved by agitation for a prescribed duration to prepare a spinning solution in which the calcium phosphate fine particles are dispersed. Electrospinning is performed on the spinning solution to manufacture biodegradable fibers having therein the calcium phosphate fine particles substantially uniformly dispersed.

Claims (26)

1. A method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process, comprising:

providing a PLGA resin to a kneader and heating the PLGA resin while rotating a blade of the kneader to soften the PLGA resin to a viscosity of 10 3.2 to 10 3.6 Pa·s;

mixing powder of calcium phosphate fine particles with the softened PLGA resin by providing the powder into the kneader while rotating the blade;

rotating the blade of the kneader with continuous force under the heating to knead the mixture so that thermal and mechanical energy is applied to the mixture to produce a composite of the PLGA resin and the calcium phosphate fine particles dispersed in the PLGA resin;

cooling and solidifying the composite;

dissolving the composite with a solvent, and stirring the dissolved composite for a predetermined time to prepare a spinning solution in which the PLGA resin is completely dissolved by the solvent and the calcium phosphate fine particles are substantially uniformly dispersed in the solvent; and

charging the spinning solution into a syringe of an electrospinning apparatus and applying voltage to produce a biodegradable fiber in which the calcium phosphate fine particles are substantially uniformly dispersed.

2. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 1 , wherein the calcium phosphate fine particles are β-TCP fine particles.

3. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 1 , wherein the PLGA resin and the calcium phosphate fine particles are provided to the kneader in a ratio of from about 30 to 50 wt % and from about 70 to 50 wt %, respectively.

4. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 1 , wherein after the PLGA resin is provided to the kneader and heated to be softened to the predetermined viscosity and kneaded for a predetermined time, the powder of calcium phosphate fine particles is provided to the kneaded PLGA resin in the kneader, and the PLGA resin and the calcium phosphate fine particles are kneaded in the kneader for a predetermined time at a temperature approximately equal to the temperature of the kneading of the PLGA resin.

5. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 1 , wherein the PLGA resin is a copolymer of PLA containing only the L-isomer of PLA and PGA.

6. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 1 , wherein the PLGA resin is a copolymer of PLA containing the L-isomer and the D-isomer of PLA in mixture and PGA.

7. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 1 , wherein the ratio of lactic acid and glycolic acid in the PLGA resin is approximately 85-50:15-50.

8. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 2 , wherein the outer diameter of the β-TCP particles is about 0.5 to 4 μm.

9. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 1 , wherein the outer diameter of the biodegradable fiber is about 10 to 150 μm.

10. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 1 , wherein the bone-regeneration material including the biodegradable fiber is in a cottonwool-like form with a bulk density of about 0.01 to 0.1 g/cm 3 .

11. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 1 , wherein the molecular weight of the PLGA resin is about 60000 to 600000.

12. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 1 , wherein the kneader is a bench-top double arm kneader.

13. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 1 , wherein the kneader is a batch kneader.

14. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 1 , wherein the kneader is a vacuum kneader.

15. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 2 , wherein the PLGA resin and the calcium phosphate fine particles are provided to the kneader in a ratio of from about 30 to 50 wt % and from about 70 to 50 wt %, respectively.

16. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 3 , wherein after the PLGA resin is provided to the kneader and heated to be softened to the predetermined viscosity and kneaded for a predetermined time, the powder of calcium phosphate fine particles is provided to the kneaded PLGA resin in the kneader, and the PLGA resin and the calcium phosphate fine particles are kneaded in the kneader for a predetermined time at a temperature approximately equal to the temperature of the kneading of the PLGA resin.

17. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 2 , wherein after the PLGA resin is provided to the kneader and heated to be softened to the predetermined viscosity and kneaded for a predetermined time, the powder of calcium phosphate fine particles is provided to the kneaded PLGA resin in the kneader, and the PLGA resin and the calcium phosphate fine particles are kneaded in the kneader for a predetermined time at a temperature approximately equal to the temperature of the kneading of the PLGA resin.

18. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 2 , wherein the PLGA resin is a copolymer of PLA containing only the L-isomer of PLA and PGA.

19. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 2 , wherein the PLGA resin is a copolymer of PLA containing the L-isomer and the D-isomer of PLA in mixture and PGA.

20. The method for producing a bone-regeneration material comprising biodegradable fiber using an electrospinning process according to claim 2 , wherein the ratio of lactic acid and glycolic acid in the PLGA resin is approximately 85-50:15-50.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2020
From: KASUGA, TOSHIHIRO; NISHIKAWA, YASUTOSHI
To: NATIONAL UNIVERSITY CORPORATION NAGOYA INSTITUTE OF TECHNOLOGY; ORTHOREBIRTH CO., LTD.
Reel/Frame 051760/0547 →
Priority Claims (1)
JP 2016-091118 · Apr 28, 2016 · national
Continuity (1)
Related Publication 20180280569A1 · Oct 4, 2018