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设计和优化具有特定功能的ε-聚赖氨酸,以满足各种应用需求。

Design and optimization of ε-poly-l-lysine with specific functions for diverse applications.

机构信息

CAS Key Laboratory of Microbial Physiological & Metabolic Engineering, State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China; University of Chinese Academy of Sciences, Beijing 100049, China.

CAS Key Laboratory of Microbial Physiological & Metabolic Engineering, State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Int J Biol Macromol. 2024 Mar;262(Pt 1):129513. doi: 10.1016/j.ijbiomac.2024.129513. Epub 2024 Jan 22.

Abstract

ε-Poly-l-lysine (ε-PL) is a natural homo-poly(amino acid) which can be produced by microorganisms. With the advantages in broad-spectrum antimicrobial activity, biodegradability, and biocompatibility, ε-PL has been widely used as a preservative in the food industry. Different molecular architectures endow ε-PL and ε-PL-based materials with versatile applications. However, the microbial synthesis of ε-PL is currently limited by low efficiencies in genetic engineering and molecular architecture modification. This review presents recent advances in ε-PL production and molecular architecture modification of microbial ε-PL, with a focus on the current challenges and solutions for the improvement of the productivity and diversity of ε-PL. In addition, we highlight recent examples where ε-PL has been applied to expand the versability of edible films and nanoparticles in various applications. Commercial production and the challenges and future research directions in ε-PL biosynthesis are also discussed. Currently, although the main use of ε-PL is as a food preservative, ε-PL and ε-PL-based polymers have shown excellent application potential in biomedical fields. With the development of synthetic biology, the design and synthesis of ε-PL with a customized molecular architecture are possible in the near future. ε-PL-based polymers with specific functions will be a new trend in biopolymer manufacturing.

摘要

ε-聚赖氨酸(ε-PL)是一种天然的同聚(氨基酸),可以由微生物生产。由于具有广谱抗菌活性、可生物降解性和生物相容性等优点,ε-PL 已被广泛用作食品工业中的防腐剂。不同的分子结构赋予 ε-PL 和基于 ε-PL 的材料多种应用。然而,微生物合成 ε-PL 目前受到遗传工程和分子结构修饰效率低的限制。本综述介绍了微生物 ε-PL 生产和分子结构修饰的最新进展,重点介绍了提高 ε-PL 产量和多样性的当前挑战和解决方案。此外,我们还强调了最近的一些例子,其中 ε-PL 已被应用于扩展可食用薄膜和纳米粒子在各种应用中的多功能性。还讨论了 ε-PL 生物合成的商业生产以及挑战和未来研究方向。目前,尽管 ε-PL 的主要用途是作为食品防腐剂,但 ε-PL 和基于 ε-PL 的聚合物在生物医学领域已经显示出了极好的应用潜力。随着合成生物学的发展,在不久的将来有可能设计和合成具有定制分子结构的 ε-PL。具有特定功能的基于 ε-PL 的聚合物将成为生物聚合物制造的一个新趋势。

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