揭开抗生素耐药性武器库的神秘面纱:抗菌肽作为针对耐多药细菌的广谱武器

Ibrahim Mohammed Hussaini , Asmau Nna Sulaiman , Salim Charanchi Abubakar , Tariq Mohammed Abdulazeez , Murjanatu Muhammad Abdullahi , Mamunu Abdulkadir Sulaiman , Abubakar Madika , Musa Bishir , Aliyu Muhammad
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摘要

抗生素耐药性细菌的出现是公共卫生面临的一项严峻挑战。人们对抗生素耐药性的担忧与日俱增,因此有必要寻找替代疗法。抗菌肽是一种广谱杀菌化合物,对耐多药细菌具有良好的活性,因此被认为是对付耐多药细菌的一种新兴治疗方法。天然抗菌肽大多来自植物、两栖动物、哺乳动物、昆虫和微生物。除了天然抗菌肽,还生产了许多合成肽。大多数肽通过物理方式破坏细菌的细胞膜来显示抗菌活性,而其他肽则针对非膜结构,如细菌细胞壁和细菌的细胞内成分。本综述重点介绍了抗菌肽对细菌(包括耐药菌株)的抗菌活性。其中一些肽在单独使用时具有抗菌活性,而另一些肽在与抗生素一起使用时则具有协同抗菌活性。综述还概述了细菌对抗菌肽产生抗药性的机制,以及对肽进行化学修饰以增强其生物活性和稳定性的各种技术。本综述还总结了现有的抗菌肽数据库。本综述深入探讨了抗菌肽的治疗用途,将其作为治疗耐抗生素细菌菌株引起的感染的替代疗法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unveiling the arsenal against antibiotic resistance: Antibacterial peptides as broad-spectrum weapons targeting multidrug-resistant bacteria
The emergence of antibiotic resistant bacteria is a serious challenge of public health concern. The increasing concern of antibiotic resistance has necessitated the need for alternative therapeutic options. Antibacterial peptides are broad-spectrum bactericidal compounds with promising activity against multidrug resistant bacteria, hence their recognition as an emerging therapeutic approach against multidrug resistant bacteria. Naturally occurring antibacterial peptides are mostly sourced from plants, amphibians, mammals, insects, and microorganisms. Aside from naturally occurring antibacterial peptides, many synthetic peptides have also been produced. Most peptides exhibit antibacterial activity by physically disrupting the cell membranes of bacteria, while other peptides target non-membrane structures such as bacterial cell walls and intracellular components of the bacteria. This review highlights the antibacterial activity of antibacterial peptides against bacteria including drug-resistant bacterial strains. Some of these peptides exhibited antibacterial activity when used alone while others exhibited synergistic antibacterial activity when used with antibiotics. The review also outlines the mechanism of antibacterial peptide resistance among bacteria and various techniques used for the chemical modification of peptides to enhance their bioactivity and stability. Existing antimicrobial peptide databases were also summarized in this review. This review gives an insight into the therapeutic use of antibacterial peptides as an alternative therapeutic option for the treatment of infection caused by antibiotic resistant bacterial strains.
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