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包埋热处理和固定化蛋白酶 K 对聚(L-乳酸)薄膜的酶促自降解作用。

Enzymatic Self-Biodegradation of Poly(l-lactic acid) Films by Embedded Heat-Treated and Immobilized Proteinase K.

机构信息

Science of Polymeric Materials, Department of Biomaterial Sciences, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan.

Materials Structure Group I, The Research and Utilization Division, Japan Synchrotron Radiation Research Institute (JASRI), Kouto, Sayo-cho, Sayo-gun, Hyogo 679-5148, Japan.

出版信息

Biomacromolecules. 2020 Aug 10;21(8):3301-3307. doi: 10.1021/acs.biomac.0c00759. Epub 2020 Jul 29.

Abstract

Non-biodegradable microplastics have become a global problem. We propose a new enzyme-embedded biodegradable plastic that can be self-biodegraded anytime and anywhere. Proteinase K from was embedded in poly(l-lactic acid) (PLLA). The PLLA solution-cast film with embedded proteinase K showed weight loss of 78% after 96 h incubation. In addition, PLLA extruded films embedding immobilized proteinase K encapsulated in polyacrylamide were produced at 200 °C and embedded-enzyme degradation was monitored. Immobilized proteinase K embedded in the extruded film maintained its degradation activity and degraded the PLLA film from inside to make small holes and cavities, suggesting that immobilization is a powerful technique to prepare thermoforms with embedded enzymes. The rate of embedded-enzyme degradation was accelerated by dividing the film into smaller pieces, which can be regarded as a model experiment for biodegradation of microplastics. Various biodegradable plastics with specific embedded enzymes will contribute to solve global environmental problems.

摘要

不可生物降解的微塑料已成为全球性问题。我们提出了一种新的酶嵌入可生物降解塑料,可以随时随地进行自我生物降解。来自 的蛋白酶 K 被嵌入聚(L-乳酸)(PLLA)中。在孵育 96 小时后,嵌入蛋白酶 K 的 PLLA 溶液浇铸膜显示出 78%的重量损失。此外,在 200°C 下生产了包埋在聚丙烯酰胺中的固定化蛋白酶 K 嵌入的 PLLA 挤出膜,并监测了嵌入酶的降解。嵌入挤出膜中的固定化蛋白酶 K 保持其降解活性,并从内部降解 PLLA 膜以形成小孔和空腔,这表明固定化是制备具有嵌入酶的热成型制品的有效技术。通过将膜分成较小的碎片来加速嵌入酶的降解,这可以被视为微塑料生物降解的模型实验。具有特定嵌入酶的各种可生物降解塑料将有助于解决全球环境问题。

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