首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Discovery of an ultra-short linear antibacterial tetrapeptide with anti-MRSA activity from a structure-activity relationship study
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Discovery of an ultra-short linear antibacterial tetrapeptide with anti-MRSA activity from a structure-activity relationship study

机译:通过结构-活性关系研究发现具有抗MRSA活性的超短线性抗菌四肽

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摘要

The overuse and misuse of antibiotics has resulted in the emergence of drug-resistant pathogenic bacteria, including meticillin-resistant Staphylococcus aureus (MRSA), the primary pathogen responsible for human skin and soft-tissue infections. Antibacterial peptides are known to kill bacteria by rapidly disrupting their membranes and are deemed plausible alternatives to conventional antibiotics. One advantage of their membrane-targeting mode of action is that bacteria are unlikely to develop resistance as changing their cell membrane structure and morphology would likely involve extensive genetic mutations. However, major concerns in using peptides as antibacterial drugs include their instability towards plasma proteases, toxicity towards human cells due to their membrane-targeting mode of action and high manufacturing cost. These concerns can be mitigated by developing peptides as topical agents, by the judicial selection of amino acids and developing very short peptides respectively. In this preliminary report, we reveal a linear, non-hemolytic tetrapeptide with rapid bactericidal activity against MRSA developed from a structure activity relationship study based on the antimicrobial hexapeptide WRWRWR-NH2. Our finding opens promising avenues for the development of ultra-short antibacterials to treat multidrug-resistant MRSA skin and soft tissue infections. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:抗生素的过度使用和滥用导致了耐药性病原细菌的出现,其中包括耐甲氧西林的金黄色葡萄球菌(MRSA),这是导致人类皮肤和软组织感染的主要病原体。已知抗菌肽可通过迅速破坏其膜来杀死细菌,并且被认为是常规抗生素的可行替代品。它们的膜靶向作用模式的优势之一是细菌不太可能产生耐药性,因为改变其细胞膜结构和形态可能会涉及广泛的遗传突变。然而,使用肽作为抗菌药物的主要问题包括其对血浆蛋白酶的不稳定性,由于其膜靶向作用方式对人细胞的毒性以及高制造成本。通过开发肽作为局部用药,通过司法选择氨基酸和开发非常短的肽,可以减轻这些担忧。在这份初步报告中,我们揭示了基于抗微生物六肽WRWRWR-NH2的结构活性关系研究开发的对MRSA具有快速杀菌活性的线性,非溶血性四肽。我们的发现为开发用于治疗多药耐药的MRSA皮肤和软组织感染的超短抗菌剂开辟了有希望的途径。 (C)2015 Elsevier Masson SAS。版权所有。

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