期刊文献+

In vitro Study on Biodegradable AZ31 Magnesium Alloy Fibers Reinforced PLGA Composite 被引量:12

In vitro Study on Biodegradable AZ31 Magnesium Alloy Fibers Reinforced PLGA Composite
原文传递
导出
摘要 AZ31 magnesium alloy fibers reinforced poly(lactic-co-glycolic acid) (PLGA) composites were prepared and their mechanical property, immersion corrosion behavior and biocompatibility were studied. The tensile test showed that with the addition of AZ31 fibers, the composites had a significant increment in tensile strength and elongation. For the direct cell attachment test, all the cells showed a healthy morphology and spread well on the experimental sample surfaces. The immersion results indicated that pH values of the immersion medium increased with increasing AZ31 fiber contents. All the in vitro experimental results indicated that this new kind of magnesium alloy fibers reinforced PLGA composites show a potential for future biomedical applications. AZ31 magnesium alloy fibers reinforced poly(lactic-co-glycolic acid) (PLGA) composites were prepared and their mechanical property, immersion corrosion behavior and biocompatibility were studied. The tensile test showed that with the addition of AZ31 fibers, the composites had a significant increment in tensile strength and elongation. For the direct cell attachment test, all the cells showed a healthy morphology and spread well on the experimental sample surfaces. The immersion results indicated that pH values of the immersion medium increased with increasing AZ31 fiber contents. All the in vitro experimental results indicated that this new kind of magnesium alloy fibers reinforced PLGA composites show a potential for future biomedical applications.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2013年第6期545-550,共6页 材料科学技术(英文版)
基金 supported by the National Basic Research Program of China(973 Program)(Grant Nos.2012CB619102 and 2012CB619103) the State Key Laboratory for Mechanical Behavior of Materials(Grant No.20111210) the National High Technology Research and Development Program of China(863 Program)(Grant No.2011AA030103) the Research Fund for the Doctoral Program of Higher Education(Grant No. 20100001110011) the National Natural Science Foundation of China(No.31170909) the National Science Fund for Distinguished Young Scholars(Grant No.51225101)
关键词 BIOMATERIALS Corrosion Polymeric composites AZ31 magnesium fiber Biomaterials Corrosion Polymeric composites AZ31 magnesium fiber
  • 相关文献

参考文献1

二级参考文献28

  • 1J.P. Fisher, A.G. Mikos and J.D. Bronzino: Tissue Engineering, New York, CRC Press, 2007, 21.
  • 2M. Biondi, F. Ungaro, F. Quaglia and P.A. Netti: Adv. Drug Delivery Rev., 2008, 60, 229.
  • 3P.X. Ma: Materials Today, 2004, 30, 5.
  • 4P.X. Ma and J. Elissee?: Sca?olding in Tissue Engineering. CRC Press, Taylor and Francis Group, 2006, 241.
  • 5K. Rezwan, Q.Z. Chen, J.J. Blaker and A.R. Boccaccini: Biomaterials, 2006, 27, 3413.
  • 6H.S. Nalwa: Handbook of Nanostructured Biomaterials and Their Applications in Nanobiotechnology, American Scientific Publishers, Los Angeles, 2005, 393.
  • 7J. Huang, Y.W. Lin and X.W. Fu: J. Mater. Sci: Mater. Med., 2007, 18, 2151.
  • 8S.S. Kim, M.S. Park, O. Jeon, C.Y. Choi and B.S. Kim: Biomaterials, 2006, 27, 1399.
  • 9E.M. Christenson, K.S. Anseth, J.J.J.P. van den Beucken, C.K. Chan, B. Ercan, J.A. Jansen, C.T. Lau- rencin, W.J. Li, R. Murugan, L.S. Nair, S. Ramakr- ishna, R.S. Tuan, T.J. Webster and A.G. Mikos: J. Orthop. Res., 2006, 1, 11.
  • 10A.J. Crosby and J.Y. Lee: Poly. Rev., 2007, 47, 217.

共引文献2

同被引文献45

  • 1Nida IQBAL,Saman IQBAL,Tanveer IQBAL,H.R.BAKHSHESHI-RAD,Ahmed ALSAKKAF,Ahmad KAMIL,Mohammed Rafiq ABDUL KADIR,Mohd Hasbullah IDRIS,H.Balaji RAGHAV.Zinc-doped hydroxyapatite-zeolite/polycaprolactone composites coating on magnesium substrate for enhancing in-vitro corrosion and antibacterial performance[J].Transactions of Nonferrous Metals Society of China,2020,30(1):123-133. 被引量:12
  • 2Mitsuo Niinomi.Recent metallic materials for biomedical applications[J].Metallurgical and Materials Transactions A.2002(3)
  • 3Y.F. Zheng,X.N. Gu,F. Witte.Biodegradable metals[J].Materials Science & Engineering R.2014
  • 4Ralf Unger,Matthias C. Haupt,Peter Horst.Application of Lagrange multipliers for coupled problems in fluid and structural interactions[J].Computers and Structures.2007(11)
  • 5Zhongkui Hong,Peibiao Zhang,Chaoliang He,Xueyu Qiu,Aixue Liu,Li Chen,Xuesi Chen,Xiabin Jing.Nano-composite of poly( l -lactide) and surface grafted hydroxyapatite: Mechanical properties and biocompatibility[J].Biomaterials.2005(32)
  • 6Tao Zeng,Dai-ning Fang,Tian-jian Lu.Dynamic crashing and impact energy absorption of 3D braided composite tubes[J].Materials Letters.2005(12)
  • 7Shiuh-Chuan Her,Yu-Cheng Liang.The finite element analysis of composite laminates and shell structures subjected to low velocity impact[J].Composite Structures.2004(1)
  • 8N.A Weir,F.J Buchanan,J.F Orr,D.F Farrar,A Boyd.Processing, annealing and sterilisation of poly- l -lactide[J].Biomaterials.2003(18)
  • 9Shiming Zhuang,Guruswami Ravichandran,Dennis E. Grady.An experimental investigation of shock wave propagation in periodically layered composites[J].Journal of the Mechanics and Physics of Solids.2002(2)
  • 10Heinonen A,Kannus P,Siev?nen H,Oja P,Pasanen M,Rinne M,Uusi-Rasi K,Vuori I.Randomised controlled trial of effect of high-impact exercise on selected risk factors for osteoporotic fractures[].The Lancet.1996

引证文献12

二级引证文献97

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部