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Biomaterials for Tissue Engineered Scaffolds

机译:用于组织工程脚手架的生物材料

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In recent years the development of tissue engineered scaffolds from biodegradable polymers has been advancing because of their use as support material for tissue regeneration. This paper describes the various ideal biopolymers and their essential characteristics to suitable for tissue engineering applications. The functional characteristics of biomaterial include the optimization of porosity, wet ability, biocompatibility, surface topology and mechanical property to mimic the ECM function. The scaffold can be designed and fabricated by porogen leaching, thermally induced phase separation, emulsion polymerization, electro spinning and SFF for designing of 3-D scaffolds. Surface modification of scaffold is important to improve their mechanical and chemical properties which can be achieved by suitable chemical and/or irradiation. The scaffold must be biocompatible in order to provide the proper microenvironment for tissue-scaffold interaction. A brief of the ongoing research in the area of scaffold development for bone and cartilage tissue repair is also described.
机译:近年来,由于它们用作组织再生的载体材料,因此可以推进组织工程的支架的发展。本文描述了适合组织工程应用的各种理想的生物聚合物及其基本特征。生物材料的功能特性包括优化孔隙率,湿润能力,生物相容性,表面拓扑和机械性能,以模仿ECM功能。支架可以通过致孔剂浸出,热诱导的相分离,乳液聚合,电纺丝和SFF设计和制造,用于设计3-D支架。支架的表面改性对于改善其机械和化学性质是重要的,这可以通过合适的化学和/或辐射来实现。支架必须是生物相容性的,以便为组织支架相互作用提供适当的微环境。还描述了对骨和软骨组织修复的支架开发领域的持续研究。

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