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首页> 外文期刊>Journal of biomedical materials research, Part A >Triblock copolymers of ε-caprolactone, L -lactide, and trimethylene carbonate: Biodegradability and elastomeric behavior
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Triblock copolymers of ε-caprolactone, L -lactide, and trimethylene carbonate: Biodegradability and elastomeric behavior

机译:ε-己内酯,L-丙交酯和碳酸三亚甲基酯的三嵌段共聚物:生物降解性和弹性行为

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摘要

For the triblock copolymer of ε-caprolactone, trimethylene carbonate, and L-lactide, where L-lactide blocks form the two ends, there is a range of compositions over which elastomeric behavior is obtained. Within this composition range, these polymers show good creep and recovery at ambient temperature, and exhibit high elongations to break. Additionally, we demonstrate that the recovery is independent of stress and strain for the elastomer compositions. The range of compositions that yield elastomeric character is rationalized based on the structure; specifically, there must be a minimum crystallinity of the end blocks and no crystallinity in the midblock, in addition to molar mass requirements. These polymers degrade by simple hydrolysis, and the rate of degradation is potentially programmable by manipulation of the molar ratio of hard segment to soft segment. Compared to biodegradable polyurethane, these polymers are expected to yield less harmful degradation products, and offer more variables for manipulation of properties. These polymers are also processable from the melt at temperatures exceeding about 130°C. We expect to use these polymers in a variety of applications, including stent coatings, fully-degradable stents, and atrial septal defect occluders.
机译:对于ε-己内酯,碳酸三亚甲基酯和L-丙交酯的三嵌段共聚物,其中L-丙交酯嵌段形成两个末端,在一定范围内可获得弹性性能。在该组成范围内,这些聚合物在环境温度下显示出良好的蠕变和回复性,并表现出高断裂伸长率。另外,我们证明了弹性体组合物的恢复与应力和应变无关。产生弹性特征的组合物范围根据结构合理;特别地,除了摩尔质量要求外,端基的结晶度必须最小,中段必须没有结晶度。这些聚合物通过简单的水解而降解,并且降解速率可通过控制硬链段与软链段的摩尔比来编程。与可生物降解的聚氨酯相比,这些聚合物有望产生较少的有害降解产物,并提供更多的性能调节变量。这些聚合物也可以在超过约130℃的温度下由熔体加工。我们期望将这些聚合物用于多种应用,包括支架涂层,可完全降解的支架和房间隔缺损封堵器。

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