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基于 ε-己内酯和 L-丙交酯嵌段共聚物的热塑性可生物降解弹性体:一种新的合成方法。

Thermoplastic biodegradable elastomers based on ε-caprolactone and L-lactide block co-polymers: a new synthetic approach.

机构信息

School of Materials Science and Engineering, Block N4.1, College of Engineering, 50 Nanyang Avenue, Nanyang Technological University, Singapore 639798, Singapore.

出版信息

Acta Biomater. 2010 Nov;6(11):4261-70. doi: 10.1016/j.actbio.2010.05.027. Epub 2010 Jun 1.

Abstract

Although biodegradable polymers have found extensive application in medical devices, there are very few commercially available elastomeric biodegradable polymers. In this work, starting with the well-known monomers L-lactide and ε-caprolactone, we developed elastomers using a multiblock co-polymer approach. This ensures that the degradation products of such elastomers are also acceptable from a cytotoxicity standpoint. A series of polymers with various structures was synthesized utilizing a design of experiment approach. The basic structure is that of a diblock, with each block being modified by the addition of co-monomer. The synthesized polymers exhibited a range of mechanical properties from a typical thermoplastic polymer to that approaching a good thermoplastic elastomer. 13C nuclear magnetic resonance analysis, size exclusion chromatography and differential scanning calorimetry measurements have been utilized to relate the observed range of mechanical properties to the structure. In addition, the elastomeric nature has been established with the use of creep and recovery measurements. Such elastomers may find a variety of biomedical applications, ranging from stent coatings to atrial septal defect occluders.

摘要

尽管可生物降解聚合物已在医疗器械中得到广泛应用,但可商业化的弹性体可生物降解聚合物却非常少。在这项工作中,我们从众所周知的单体 L-丙交酯和 ε-己内酯开始,采用多嵌段共聚物的方法开发弹性体。这确保了此类弹性体的降解产物在细胞毒性方面也是可接受的。利用实验设计方法合成了一系列具有不同结构的聚合物。基本结构为二嵌段,每个嵌段都通过添加共聚单体进行修饰。合成的聚合物表现出一系列机械性能,从典型的热塑性聚合物到接近良好的热塑性弹性体。13C 核磁共振分析、凝胶渗透色谱和差示扫描量热法测量已被用于将观察到的机械性能范围与结构相关联。此外,还使用蠕变和恢复测量来确定弹性体的性质。这种弹性体可能会有多种生物医学应用,从支架涂层到房间隔缺损封堵器。

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