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宿主防御肽治疗潜力的转化策略。

Strategies in Translating the Therapeutic Potentials of Host Defense Peptides.

机构信息

Larry A. Donoso Laboratory for Eye Research, Academic Ophthalmology, Division of Clinical Neuroscience, School of Medicine, University of Nottingham, Nottingham, United Kingdom.

Department of Ophthalmology, Queen's Medical Centre, Nottingham, United Kingdom.

出版信息

Front Immunol. 2020 May 22;11:983. doi: 10.3389/fimmu.2020.00983. eCollection 2020.

Abstract

The golden era of antibiotics, heralded by the discovery of penicillin, has long been challenged by the emergence of antimicrobial resistance (AMR). Host defense peptides (HDPs), previously known as antimicrobial peptides, are emerging as a group of promising antimicrobial candidates for combatting AMR due to their rapid and unique antimicrobial action. Decades of research have advanced our understanding of the relationship between the physicochemical properties of HDPs and their underlying antimicrobial and non-antimicrobial functions, including immunomodulatory, anti-biofilm, and wound healing properties. However, the mission of translating novel HDP-derived molecules from bench to bedside has yet to be fully accomplished, primarily attributed to their intricate structure-activity relationship, toxicity, instability in host and microbial environment, lack of correlation between and efficacies, and dwindling interest from large pharmaceutical companies. Based on our previous experience and the expanding knowledge gleaned from the literature, this review aims to summarize the novel strategies that have been employed to enhance the antimicrobial efficacy, proteolytic stability, and cell selectivity, which are all crucial factors for bench-to-bedside translation of HDP-based treatment. Strategies such as residues substitution with natural and/or unnatural amino acids, hybridization, L-to-D heterochiral isomerization, C- and N-terminal modification, cyclization, incorporation with nanoparticles, and "smart design" using artificial intelligence technology, will be discussed. We also provide an overview of HDP-based treatment that are currently in the development pipeline.

摘要

抗生素的黄金时代,以青霉素的发现为标志,长期以来一直受到抗菌药物耐药性(AMR)的挑战。宿主防御肽(HDPs),以前称为抗菌肽,由于其快速而独特的抗菌作用,作为一组有前途的抗 AMR 抗菌候选物而崭露头角。几十年来的研究加深了我们对 HDP 的理化性质与其抗菌和非抗菌功能(包括免疫调节、抗生物膜和伤口愈合特性)之间关系的理解。然而,将新型 HDP 衍生分子从实验室转化为临床应用的使命尚未完全实现,主要归因于其复杂的结构-活性关系、毒性、在宿主和微生物环境中的不稳定性、疗效之间缺乏相关性,以及大型制药公司兴趣的减弱。基于我们之前的经验和从文献中获得的不断扩大的知识,本综述旨在总结已采用的增强 HDP 类治疗的抗菌功效、蛋白水解稳定性和细胞选择性的新型策略。讨论的策略包括用天然和/或非天然氨基酸进行残基取代、杂交、L 到 D 异手性异构化、C 端和 N 端修饰、环化、与纳米颗粒结合,以及使用人工智能技术进行“智能设计”。我们还概述了目前处于开发管道中的基于 HDP 的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c90/7256188/10d8d04f5d9d/fimmu-11-00983-g0001.jpg

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