生物可降解合成聚合物的最新进展。

Pathiraja Gunatillake, Roshan Mayadunne, Raju Adhikari
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引用次数: 340

摘要

本章回顾了生物可降解合成聚合物的最新发展,重点是定制聚合物结构,以满足组织工程产品和治疗等新兴应用的材料规格。对合成聚合物的主要类别和新家族的合成、性能和生物降解性进行了讨论,并根据过去10-15年的研究报告总结了已知的降解模式和产物。综述了聚酯及其共聚物、聚氨酯、聚磷腈、聚酸酐、聚碳酸酯、聚酯酰胺以及最近发展起来的基于聚马来酸丙酯、聚氨酯和丙烯酸酯/聚氨酯体系的可注射聚合物体系。聚乙醇酸酯、聚乳酸酯及其共聚物等聚酯仍然是合成生物可降解聚合物的主要类别,其产品在临床应用。尽管各种共聚方法已经满足了不同应用的需要,但酸性降解产物的释放、加工困难和机械性能范围有限仍然是这类聚合物的主要缺点。基于聚氨酯和聚氨酯/丙烯酸酯的可注射聚合物在开发组织工程产品和治疗的输送系统方面显示出巨大的前景。
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Recent developments in biodegradable synthetic polymers.

This chapter reviews recent developments in biodegradable synthetic polymers focusing on tailoring polymer structures to meet material specification for emerging applications such as tissue engineered products and therapies. Major classes and new families of synthetic polymers are discussed with regard to synthesis, properties and biodegradability, and known degradation modes and products are summarized based on studies reported during the past 10-15 years. Polyesters and their copolymers, polyurethanes, polyphosphazenes, polyanhydrides, polycarbonates, polyesteramides and recently developed injectable polymer systems based on polypropylenefumarates, polyurethanes and acrylate/urethane systems are reviewed. Polyesters such as polyglycolides, polylactides and their copolymers still remain as the major class of synthetic biodegradable polymers with products in clinical use. Although various copolymerization methods have addressed needs of different applications, release of acidic degradation products, processing difficulties and limited range of mechanical properties remains as major disadvantages of this family of polymers. Injectable polymers based on urethane and urethane/acrylate have shown great promise in developing delivery systems for tissue engineered products and therapies.

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