生物材料与组织工程支架研究进展  被引量:4

Progress in Research of Biomaterials and Tissue Engineering Scaffolds

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作  者:刘晓南 李刚[2] 何敏[2] 张道海[2,3] 秦舒浩[2,3] 彭红英 Liu Xiaonan;Li Gang;He Min;Zhang Daohai;Qin Shuhao;Peng Hongying(The Affiliated Baiyun Hospital of Guizhou Medical University,Guiyang 550014,China;College of Materials Science and Metallurgy Engineering,Guizhou University,Guiyang 550025,China;National Engineering Research Center for Compounding and Modification of Polymeric Materials,Guiyang 550014,China)

机构地区:[1]贵州医科大学附属白云医院,贵阳550014 [2]贵州大学材料与冶金学院,贵阳550025 [3]国家复合改性聚合物材料工程技术研究中心,贵阳550014

出  处:《工程塑料应用》2018年第7期133-137,共5页Engineering Plastics Application

基  金:黔科合平台人才[2017]5623;黔科合平台人才[2016]5630;白科合同[2016]60号

摘  要:针对目前在组织工程中应用的材料不能完全满足组织工程要求,而新型的生物材料具有更为优异的性能和更广阔应用前景的现状,对各种生物材料的性能及应用前景进行综合分析,探讨能满足组织工程的具有优异性能的生物材料。同时,对目前这些生物材料在组织工程中的应用和发展进行探究,从而对未来在组织工程中应用的可生物降解支架的发展方向进行导向和分析。According to the status that the materials used in tissue engineering cannot fully meet the requirements of tissue engineering at present,while new biomaterials have superior performance and broader application prospects,the performance and application prospects of various biomaterials were comprehensively analyzed,and biomaterials that can meet the needs of tissue engineering and have excellent performance were discusses. At the same time,the current application and development of these biomaterials in tissue engineering were explored to guide and analyze the direction of the future development of biodegradable scaffolds used in tissue engineering.

关 键 词:组织工程 生物材料 关键因素 研究改进 生物相容性 

分 类 号:Q-1[生物学]

 

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