首页> 外文会议>International Conference on Carbon Dioxide Utilization; 20050620-23; Oslo(NO) >Enzymatic degradation of poly(propylene carbonate) and poly(propylene carbonate-co-ε-caprolactone) synthesized via CO_2 fixation
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Enzymatic degradation of poly(propylene carbonate) and poly(propylene carbonate-co-ε-caprolactone) synthesized via CO_2 fixation

机译:通过CO_2固定合成的聚碳酸亚丙酯和聚碳酸亚丙酯-ε-己内酯的酶促降解

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Poly(propylene carbonate) (PPC) and poly(propylene carbonate-co-ε-caprolactone) (PPCCL) were synthesized via the zinc glutarate catalyzed copolymerization of carbon dioxide (CO_2) and propylene oxide (PO) without and with ε-caprolactone (CL), respectively. In addition, poly(ε-caprolactone) (PCL) was prepared via the homopolymerization of CL with the aid of methyl triflate catalyst. The polymer products were characterized in terms of their chemical compositions, molecular weights, and thermal properties. Films of these polymers were tested with a series of enzymes (four different families and a total of 18 enzymes) in a phosphate buffer in order to characterize their enzymatic degradabilities. This is the first report demonstrating that PPC films exhibit positive enzymatic degradability with Rhizopus arrhizus lipase, esterase/lipase ColoneZyme A, and Proteinase K. Moreover, PPCCL films exhibited positive enzymatic degradability with most of the enzymes utilized in our study, and thus PPCCL has an enzymatic degradability comparable to that of PCL, In particular, the PPCCL films exhibit excellent enzymatic degradability with Pseudomonas lipase, Rhizopus arrhizus lipase, and esterase/lipase ColoneZyme A. Considering its excellent enzymatic degradability, the PPCCL terpolymer has potential biomedical applications. In conclusion, ZnGA-catalyzed copolymerizations of CO_2 and PO with or without CL are chemical fixation processes of CO_2 that can be used to produce enzyme-degradable aliphatic polymers.
机译:聚碳酸亚丙酯(PPC)和聚碳酸亚丙酯-共-ε-己内酯(PPCCL)是通过戊二酸锌催化的二氧化碳(CO_2)与环氧丙烷(PO)的共聚和不与ε-己内酯( CL)。此外,借助于三氟甲磺酸甲酯催化剂通过CL的均聚制备聚(ε-己内酯)(PCL)。聚合物产物通过其化学组成,分子量和热性质进行表征。这些聚合物的薄膜在磷酸盐缓冲液中用一系列酶(四个不同的家族,总共18种酶)进行测试,以表征其酶促降解能力。这是第一份证明PPC膜与根霉脂肪酶,酯酶/脂肪酶ColoneZyme A和蛋白酶K呈正酶降解性的报告。此外,PPCCL膜与我们研究中使用的大多数酶均呈正酶降解性。 PPCCL膜具有与Pseudomonas脂肪酶,根霉脂肪酶和酯酶/脂肪酶ColoneZyme A相当的酶促降解性。特别是,PPCCL膜表现出优异的酶促降解性。考虑到其出色的酶促降解性,PPCCL三元共聚物具有潜在的生物医学应用前景。总之,在有或没有CL的情况下,ZnGA催化的CO_2和PO的共聚反应都是CO_2的化学固定过程,可用于生产可酶降解的脂肪族聚合物。

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