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用于可持续应用的酶嵌入可生物降解塑料:进展、挑战与展望

Enzyme-Embedded Biodegradable Plastic for Sustainable Applications: Advances, Challenges, and Perspectives.

作者信息

Sun Shengwei

机构信息

School of Engineering Sciences in Chemistry, Biotechnology and Health, Department of Fibre and Polymer Technology, KTH Royal Institute of Technology, 10044 Stockholm, Sweden.

School of Engineering Sciences in Chemistry, Biotechnology and Health, Science for Life Laboratory, Tomtebodavägen 23, 17165 Solna, Sweden.

出版信息

ACS Appl Bio Mater. 2025 Mar 17;8(3):1785-1796. doi: 10.1021/acsabm.4c01628. Epub 2025 Feb 13.

Abstract

Global plastic production is increasing yearly, with packaging materials and disposable plastics accounting for a sizable portion of the total. Despite its apparent advantages, the resulting plastic waste accumulates in landfills and oceans, causing severe environmental and public health issues. Shifting from conventional plastics to biodegradable plastics (BPs) is increasingly being proposed as an efficient management of end-of-life plastics. While several BPs such as poly(lactic acid), poly(ε-caprolactone), and poly(hydroxyalkanoates) have been widely used, their biodegradation rates often do not meet the anticipated level under home-compost or other certain environments (e.g., soil, marine). Recently, enzyme-embedded BPs have emerged as an outstanding alternative to currently used synthetic plastics. It achieves rapid degradation and compostability by introducing a specific enzyme into the biodegradable polymer. In this context, this review aims to summarize the recent advances in the development of such superior biomaterials. It identifies and prioritizes the critical success factors required for the production of enzyme-embedded BPs. The review also discusses several challenges in the development and application of these innovative polymer materials.

摘要

全球塑料产量逐年增加,包装材料和一次性塑料制品在总产量中占相当大的比例。尽管具有明显优势,但产生的塑料垃圾在垃圾填埋场和海洋中不断累积,引发了严重的环境和公共卫生问题。越来越多的人提议从传统塑料转向可生物降解塑料(BPs),作为一种有效的废弃塑料管理方式。虽然聚乳酸、聚己内酯和聚羟基脂肪酸酯等几种可生物降解塑料已被广泛使用,但它们在家庭堆肥或其他特定环境(如土壤、海洋)中的生物降解率往往达不到预期水平。最近,嵌入酶的可生物降解塑料已成为目前使用的合成塑料的一种出色替代品。它通过将特定酶引入可生物降解聚合物中来实现快速降解和可堆肥性。在此背景下,本综述旨在总结此类优质生物材料开发的最新进展。它确定并优先列出生产嵌入酶的可生物降解塑料所需的关键成功因素。本综述还讨论了这些创新聚合物材料开发和应用中的几个挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7484/11920951/f84351e6f15d/mt4c01628_0001.jpg

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