生物相容性
可生物降解聚合物
组织工程
聚合物
生物材料
材料科学
再生(生物学)
纳米技术
组织修复
生物医学工程
生化工程
工程类
复合材料
生物
细胞生物学
冶金
作者
Zheng Zhang,Ophir Ortiz,Ritu Goyal,Joachim Kohn
出处
期刊:Elsevier eBooks
[Elsevier]
日期:2014-01-01
卷期号:: 303-335
被引量:29
标识
DOI:10.1016/b978-0-323-22805-3.00013-x
摘要
The design and development of tissue-engineered products has benefited from many years of clinical utilization of a wide range of biodegradable polymers. Newly developed biodegradable polymers and modifications of previously developed biodegradable polymers have enhanced the tools available for creating clinically important tissue-engineering applications. Insights gained from studies of cell-matrix interactions, cell-cell signaling, and organization of cellular components, are placing increased demands on medical implants to interact with the patient’s tissue in a more biologically appropriate fashion. Whereas in the twentieth century biocompatibility was largely equated with eliciting no harmful response, the biomaterials of the twenty first century will have to elicit tissue responses that support healing or regeneration of the patient’s own tissue. This chapter surveys the universe of those biodegradable polymers that may be useful in the development of medical implants and tissue-engineered products. Here, we distinguish between biologically derived polymers and synthetic polymers. The materials are described in terms of their chemical composition, breakdown products, mechanism of breakdown, mechanical properties, and clinical limitations. Also discussed are product design considerations in processing of biomaterials into a final form (e.g., gel, membrane, matrix) that will effect the desired tissue response.
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