4.8 Article

Surface Engineering of Biodegradable Magnesium Alloys for Enhanced Orthopedic Implants

期刊

SMALL
卷 15, 期 51, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.201904486

关键词

biodegradable implants; bone generation; composite coatings; magnesium alloy

资金

  1. Projects of International Cooperation and Exchanges NSFC [81420108021]
  2. NSFC [81772402, 81802152]
  3. Jiangsu Provincial Key Medical Center Foundation
  4. Jiangsu Provincial Medical Talent Foundation
  5. Jiangsu Provincial Medical Outstanding Talent Foundation
  6. Jiangsu Science and Technology Project [BK20160633]
  7. State Key Laboratory of Analytical Chemistry for Life Science [SKLACLS1704]
  8. State Key Laboratory of Coordination Chemistry [SKLCC1819]
  9. Fundamental Research Funds for the Central Universities [021314380145]
  10. Scientific Research Foundation of Graduate School of Nanjing University [2016CL12]

向作者/读者索取更多资源

Magnesium (Mg) alloys have been promised for biomedical implants in orthopedic field, however, the fast corrosion rate and mode challenge their clinical application. To push Mg alloys materials into practice, a composite coating with biodegradable and high compatible components to improve anticorrosion property of an Mg alloy (i.e., AZ31) is designed and fabricated. The inner layer is micro-nano structured Mg(OH)(2) through hydrothermal treatment. Then stearic acid (SA) is introduced to modify Mg(OH)(2) for better reducing the gap below a surface-degradation polymer layer of poly(1,3-trimethylene carbonate). Benefited by the SA modification effect, this sandwiched coating avoids corrosive medium penetration via enhancing the adhesion strength at the interface between outer and inner layers. Both in vitro and in vivo tests indicate that the composite coating modified AZ31 perform a better anticorrosion behavior and biocompatibility compared to bare AZ31. Strikingly, a 1.7-fold improvement in volume of newly formed bone is observed surrounding the composite coating modified implant after 12 week implantation. The sandwiched biocompatible coating strategy paves a hopeful way for future translational application of Mg alloys orthopedic materials in clinics.

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