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首页> 外文期刊>Polymers >Enzymatic Degradation of Poly(butylene succinate) Copolyesters Synthesized with the Use of Candida antarctica Lipase B
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Enzymatic Degradation of Poly(butylene succinate) Copolyesters Synthesized with the Use of Candida antarctica Lipase B

机译:聚(丁二烯琥珀酸盐)共聚酯与使用念珠菌抗野胶脂肪酶B合成的共聚酯酶酶促降解

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摘要

Biodegradable polymers are an active area of investigation, particularly ones that can be produced from sustainable, biobased monomers, such as copolymers of poly(butylene succinate) (PBS). In this study, we examine the enzymatic degradation of poly(butylene succinate-dilinoleic succinate) (PBS-DLS) copolymers obtained by “green” enzymatic synthesis using lipase B from Candida antarctica (CALB). The copolymers differed in their hard to soft segments ratio, from 70:30 to 50:50 wt %. Enzymatic degradation was carried out on electrospun membranes (scaffolds) and compression-moulded films using lipase from Pseudomomas cepacia . Poly(ε-caprolactone) (PCL) was used as a reference aliphatic polyester. The degradation process was monitored gravimetrically via water uptake and mass loss. After 24 days, approx. 40% mass loss was observed for fibrous materials prepared from the PBS-DLS 70:30 copolymer, as compared to approx. 10% mass loss for PBS-DLS 50:50. Infrared spectroscopy (FTIR) and size exclusion chromatography (SEC) analysis were used to examine changes in chemical structure. Differential scanning calorimetry (DSC) and scanning light microscopy (LSM) revealed changes in degree of crystallinity, and changes in surface morphology, consistent with a surface erosion mechanism. We conclude that the obtained copolymers are suitable for tissue engineering applications thanks to tuneable degradation and lack of acidification during breakdown.
机译:可生物降解的聚合物是活性的研究领域,特别是可以由可持续的生物糖苷单体产生的面积,例如聚(丁二酸二酸酯)(PBS)的共聚物。在这项研究中,我们研究了通过来自Candida抗野凝(CALB)的脂肪酶B通过“绿色”酶合成获得的聚(丁二烯琥珀酸酯 - 稀释琥珀酸酯)(PBS-DLS)共聚物的酶促降解。共聚物在难以延伸到软段比,从70:30至50:50重量%。使用脂肪酶从假瘤荚膜肝酶进行酶膜(支架)和压缩模塑薄膜进行酶促降解。聚(ε-己内酯)(PCL)用作参考脂族聚酯。通过水吸收和质量损失,重量调速下降过程。 24天后,约。与大约相比,从PBS-DLS 70:30共聚物制备的纤维材料观察到40%质量损失。 PBS-DLS 50:50的10%质量损失。红外光谱(FTIR)和尺寸排阻色谱(SEC)分析用于检查化学结构的变化。差示扫描量热法(DSC)和扫描光学显微镜(LSM)显示结晶度的变化,以及表面形态的变化,与表面腐蚀机制一致。我们得出结论,所得共聚物适用于组织工程应用,由于可调性降解和缺乏在崩溃期间缺乏酸化。

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