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Effect of segment structures on the hydrolytic degradation behaviors of totally degradable poly(L-lactic acid)-based copolymers

机译:分段结构对完全可降解聚(L-乳酸)基于共聚物的水解降解行为的影响

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摘要

A series of high-molecular-weight terpolymers named PTG-b-LG and PT-b-LG were synthesized based on the macroinitiators of PTG copolymers and PTMC, respectively. In vitro degradation of PTG-b-LG and PT-b-LG was carried out by immersing into PBS, in comparison with that of PLLA. Mass loss, water uptake, GPC, DSC, WAXD, and H-1 NMR were examined for the degradation study. It was found that PTG-b-LG degraded faster than PT-b-LG and PLLA due to the Di-random block structure, which had lower regularity of chain and lower crystallinity. The compositional changes appeared to be more complex, but the molar mass decreased owing to chain fragmentation caused by hydrolysis. Moreover, morphological changes were also observed during the degradation in all situations with the crystallization of by-products and a preferential degradation of amorphous domains. Specifically, PTG-b-LG presented an adjustable degradation rate and may be used for the fabrication of totally biodegradation stents in the future. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47887.
机译:基于PTG共聚物和PTMC的大胆分别合成了一系列名为PTG-B-LG和PT-B-LG的高分子量三元共聚物。与PLLA的浸入PBS,通过浸入PTG-B-Lg和Pt-B-Lg的体外降解。对降解研究检查了大气损失,水吸收,GPC,DSC,WAXD和H-1 NMR。发现PTG-B-Lg由于直接随机嵌段结构,PTG-B-LG与Pt-B-Lg和PLLA具有较低的链条和下结晶度的规则性。组成变化似乎更复杂,但由于水解引起的链碎片,摩尔质量降低。此外,在所有情况的降解过程中也观察到形态学变化,副产物结晶和无定形结构域的优先降解。具体地,PTG-B-LG呈现可调节的降解速率,可用于将来制造完全生物降解支架。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,47887。

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