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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Synthesis and characterization of biobased isosorbide-containing copolyesters as shape memory polymers for biomedical applications
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Synthesis and characterization of biobased isosorbide-containing copolyesters as shape memory polymers for biomedical applications

机译:含生物基异山梨醇的共聚酯作为生物医学应用中的形状记忆聚合物的合成与表征

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摘要

Novel biobased isosorbide-containing copolyesters (PBISI copolyesters) with both biocompatibility and sustainability were synthesized by using commercially available biobased diols and diacids. Due to the presence of itaconate in copolyesters, it can be readily crosslinked by peroxide into a crystallizable network. The structure and thermal properties of PBISI copolyesters were determined by H-1 NMR, FTIR, DSC, and WAXD. The chain composition, melting point and crystallinity of the PBISI copolyesters can be tuned continuously by changing the content of isosorbide. The crosslinked copolyester is demonstrated to be a promising shape memory polymer (SMP) with excellent shape memory properties including shape fixity and shape recovery rate close to 100%. The switching temperatures of PBISI-based SMPs can be tuned between 26 degrees C and 54 degrees C by altering the composition of PBISI copolyesters and curing extent. Cell adhesion and proliferation were adopted to evaluate the potential biocompatibility of PBISI-based SMPs, and the results indicated that all the PBISI-based SMPs were essentially noncytotoxic, making them suitable for fabricating biomedical devices.
机译:通过使用市售的生物基二醇和二酸合成了具有生物相容性和可持续性的新型生物基含异山梨醇的共聚酯(PBISI共聚酯)。由于衣康酸酯在共聚酯中的存在,它很容易被过氧化物交联成可结晶网络。通过H-1 NMR,FTIR,DSC和WAXD确定PBISI共聚酯的结构和热性能。通过改变异山梨醇的含量,可以连续地调节PBISI共聚酯的链组成,熔点和结晶度。交联共聚酯被证明是一种有前途的形状记忆聚合物(SMP),具有出色的形状记忆特性,包括形状固定性和接近100%的形状恢复率。通过改变PBISI共聚酯的组成和固化程度,可以将基于PBISI的SMP的转换温度调节在26摄氏度至54摄氏度之间。通过细胞粘附和增殖来评估基于PBISI的SMP的潜在生物相容性,结果表明所有基于PBISI的SMP基本上无细胞毒性,使其适合于制造生物医学设备。

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