Banerjee Arnab, Borah Abhinav, Chah Charakho N, Dhal Manoj Kumar, Madhu Kshitij, Katiyar Vimal, Sekharan Sreedeep
Department of Civil Engineering, Indian Institute of Technology, Guwahati 781039, India; Centre for Sustainable Polymers, Indian Institute of Technology, Guwahati 781039, India.
Centre for Sustainable Polymers, Indian Institute of Technology, Guwahati 781039, India.
Int J Biol Macromol. 2024 Dec;282(Pt 4):136956. doi: 10.1016/j.ijbiomac.2024.136956. Epub 2024 Nov 1.
Polylactic Acid is a sustainable, compostable bioplastic that requires specific geoenvironmental conditions for degradation. The complexity of managing the PLA waste has limited the scope of its seamless application. There have been a significant number of studies exploring PLA degradation. Majorly they have explored degradability as a material property with limited discussions on the fundamental factors affecting degradation. The knowledge of the influence of biotic and abiotic factors and their complex interplay is critical for enhancing PLA degradation research, specifically accelerated degradation. This understanding is necessary for PLA waste upcycling and generating industrial-scale value-added products. Using the PRISMA framework, a database of articles on PLA degradation (1974-2023) has been created with each entry being annotated with 11 critical parameters depending on the scale and scope of the research. Abiotic hydrolysis, biotic hydrolysis and assimilation of PLA were discussed in detail with information on experiment design analytical techniques and background mechanisms to achieve systematic recommendations. Enzymes responsible for PLA degradation have been categorised and catalogued. The review highlights the need for future research related to PLA degradation in terms of molecular mechanisms of enzymatic degradation, bioengineering enzymes for accelerating degradation, and mathematical models for predicting degradation kinetics in complex environmental conditions.
聚乳酸是一种可持续的、可堆肥的生物塑料,其降解需要特定的地球环境条件。聚乳酸废弃物管理的复杂性限制了其无缝应用的范围。已有大量研究探索聚乳酸的降解。主要是将其降解性作为一种材料特性来研究,而对影响降解的基本因素讨论有限。了解生物和非生物因素的影响及其复杂的相互作用对于加强聚乳酸降解研究,特别是加速降解研究至关重要。这种理解对于聚乳酸废弃物的升级回收和生产工业规模的增值产品是必要的。利用PRISMA框架,创建了一个关于聚乳酸降解的文章数据库(1974 - 2023年),每个条目根据研究的规模和范围用11个关键参数进行注释。详细讨论了聚乳酸的非生物水解、生物水解和同化作用,并提供了有关实验设计、分析技术和背景机制的信息,以得出系统的建议。对负责聚乳酸降解的酶进行了分类和编目。该综述强调了未来在聚乳酸降解方面的研究需求,涉及酶促降解的分子机制、用于加速降解的生物工程酶以及预测复杂环境条件下降解动力学的数学模型。