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多孔聚(L-丙交酯)/生物活性玻璃复合材料的加工与性能

Processing and properties of porous poly(L-lactide)/bioactive glass composites.

作者信息

Zhang Kai, Wang Yunbing, Hillmyer Marc A, Francis Lorraine F

机构信息

Department of Chemical Engineering and Materials Science, University of Minnesota, 421 Washington Avenue SE, Minneapolis, MN 55455-0132, USA.

出版信息

Biomaterials. 2004 Jun;25(13):2489-500. doi: 10.1016/j.biomaterials.2003.09.033.

Abstract

Porous poly(L-lactide)/bioactive glass (PLLA/BG) composites were prepared by phase separation of polymer solutions containing bioactive glass particles (average particle size: 1.5 microm). The composite microstructures consist of a porous PLLA matrix with glass particles distributed homogeneously throughout. Large pores (>100 microm) are present in a network of smaller (<10 microm) interconnected pores. The porous microstructure of the composites was not significantly influenced by glass content (9 or 29 vol%), but silane pretreatment of the glass resulted in better glass incorporation in the matrix. Mechanical tests showed that an increase in glass content increased the elastic modulus of the composites, but decreased their tensile strength and break strain. Silane pretreatment enhanced the increase in modulus and prevented the decrease in tensile strength with increasing glass content. Composites soaked in simulated body fluid (SBF) at body temperature formed bone-like apatite inside and on their surfaces. The silane pretreatment of glass particles delayed the in vitro apatite formation. This bone-like apatite formation demonstrates the composites' potential for integration with bone.

摘要

通过含有生物活性玻璃颗粒(平均粒径:1.5微米)的聚合物溶液的相分离制备了多孔聚(L-丙交酯)/生物活性玻璃(PLLA/BG)复合材料。复合微结构由多孔PLLA基体组成,玻璃颗粒均匀分布于其中。大孔(>100微米)存在于较小(<10微米)的相互连接的孔的网络中。复合材料的多孔微结构不受玻璃含量(9或29体积%)的显著影响,但玻璃的硅烷预处理导致玻璃在基体中的结合更好。力学测试表明,玻璃含量的增加提高了复合材料的弹性模量,但降低了其拉伸强度和断裂应变。硅烷预处理增强了模量的增加,并防止了随着玻璃含量增加而导致的拉伸强度降低。在体温下浸泡在模拟体液(SBF)中的复合材料在其内部和表面形成了类骨磷灰石。玻璃颗粒的硅烷预处理延迟了体外磷灰石的形成。这种类骨磷灰石的形成证明了复合材料与骨整合的潜力。

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