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抗菌肽的微生物生产系统及优化策略:综述

Microbial production systems and optimization strategies of antimicrobial peptides: a review.

作者信息

Lou Mengxue, Ji Shuaiqi, Wu Rina, Zhu Yi, Wu Junrui, Zhang Jiachao

机构信息

College of Food Science, Shenyang Agricultural University, Shenyang, 110866, People's Republic of China.

Shenyang Key Laboratory of Microbial Fermentation Technology Innovation, Shenyang, 110866, People's Republic of China.

出版信息

World J Microbiol Biotechnol. 2025 Feb 8;41(2):66. doi: 10.1007/s11274-025-04278-x.

Abstract

Antibiotic resistance has become a public safety issue of the twenty-first century, posing a growing threat and drawing increased attention. Compared to traditional antibiotics, antimicrobial peptides (AMPs), as naturally produced small peptides, can target multiple pathways within pathogens and render them less prone to developing resistance. This makes them promising alternatives to antibiotics. However, traditional chemical synthesis methods face challenges, such as high costs, low yields, and poor stability, limiting the large-scale industrial production of AMPs. Despite extensive research to improve AMP production efficiency, issues such as low yields and complex extraction processes continue to pose significant barriers to commercial application. Therefore, there is an urgent need for new biosynthesis strategies and optimization methods to enhance AMP production efficiency and quality. This review summarizes the sources, classification, mechanisms of action and recent advances in the microbial synthesis of AMPs. It also explores innovative production methods, including recombinant microbial expression systems, fusion tags, codon optimization, tandem multimer expression, and hybrid peptide expression. Furthermore, we review the applications of gene editing technologies and artificial intelligence in AMP production, providing new perspectives and strategies for efficient, large-scale AMP production.

摘要

抗生素耐药性已成为21世纪的一个公共安全问题,构成了日益严重的威胁并引起了越来越多的关注。与传统抗生素相比,抗菌肽(AMPs)作为天然产生的小肽,可以针对病原体中的多种途径,使其更不易产生耐药性。这使它们成为抗生素有前景的替代品。然而,传统的化学合成方法面临着成本高、产量低和稳定性差等挑战,限制了抗菌肽的大规模工业化生产。尽管为提高抗菌肽生产效率进行了广泛研究,但产量低和提取过程复杂等问题仍然是商业应用的重大障碍。因此,迫切需要新的生物合成策略和优化方法来提高抗菌肽的生产效率和质量。本综述总结了抗菌肽的来源、分类、作用机制以及微生物合成的最新进展。它还探讨了创新的生产方法,包括重组微生物表达系统、融合标签、密码子优化、串联多聚体表达和杂合肽表达。此外,我们综述了基因编辑技术和人工智能在抗菌肽生产中的应用,为高效、大规模生产抗菌肽提供了新的视角和策略。

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