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新设计的具有强大生物活性和增强细胞选择性的抗菌肽可预防和逆转革兰氏阴性菌中的利福平耐药性。

Newly designed antimicrobial peptides with potent bioactivity and enhanced cell selectivity prevent and reverse rifampin resistance in Gram-negative bacteria.

作者信息

Zhu Ningyi, Zhong Chao, Liu Tianqi, Zhu Yuewen, Gou Sanhu, Bao Hexin, Yao Jia, Ni Jingman

机构信息

School of Pharmacy, Lanzhou University, Lanzhou 730000, China.

Key Laboratory of Preclinical Study for New Drugs of Gansu Province, School of Basic Medical Sciences, Lanzhou University, Lanzhou 730000, China.

出版信息

Eur J Pharm Sci. 2021 Mar 1;158:105665. doi: 10.1016/j.ejps.2020.105665. Epub 2020 Dec 4.

Abstract

The increasing prevalence of antibiotic resistance in Gram-negative bacteria calls for the discovery of novel effective therapeutic strategies urgently. Mastoparan-C (MP-C), a typical cationic α-helical antimicrobial peptide, possesses remarkable broad-spectrum antimicrobial activity. However, its high cytotoxicity toward normal mammalian cells precludes it for further development. In this study, to avoid non-specific membrane lysis and investigate the structure-function relationships of each amino acid of MP-C, a series of new MP-C analogs were rationally designed by amino acid substitution and peptide truncation. Three potential newly designed peptides LG, LA, and LGAK with excellent bioactivity, modest cell toxicity, low resistance tendency, and moderate stability to physiological salts and proteases were screened out. Moreover, the newly designed peptides showed synergy or additive effects against Gram-negative bacteria, when they combined with conventional antibiotics gentamicin, rifampin, and polymyxin B. The results from the time-kill kinetics, outer/inner membrane permeabilization, scanning electron microscope (SEM), and flow cytometry demonstrated that the newly designed peptides could kill bacteria rapidly by membrane destruction and intracellular contents leakage in a concentration and time-dependent manner. Specifically, the most cell-selective peptide LGAK exhibited potent antimicrobial activity against rifampin-resistant E. coli (RRE) and prevented the emergence of rifampin resistance in Enterobacter. Besides, LGAK was capable of reversing rifampin resistance in RRE through the outer membrane permeabilization when used in combination with rifampin. Collectively, our results suggested that the newly designed peptides are hopeful antibiotic alternatives, and the usage of them as an adjuvant to prevent and reverse antibiotic resistance is a promising strategy for tackling the risk of drug-resistant Gram-negative bacteria.

摘要

革兰氏阴性菌中抗生素耐药性的日益普遍迫切需要发现新的有效治疗策略。马斯托帕兰 - C(MP - C)是一种典型的阳离子α - 螺旋抗菌肽,具有显著的广谱抗菌活性。然而,其对正常哺乳动物细胞的高细胞毒性使其无法进一步开发。在本研究中,为避免非特异性膜裂解并研究MP - C每个氨基酸的结构 - 功能关系,通过氨基酸取代和肽截短合理设计了一系列新的MP - C类似物。筛选出了三种具有优异生物活性、适度细胞毒性、低耐药倾向以及对生理盐和蛋白酶具有适度稳定性的潜在新设计肽LG、LA和LGAK。此外,新设计的肽与传统抗生素庆大霉素、利福平及多粘菌素B联合使用时,对革兰氏阴性菌表现出协同或相加作用。时间 - 杀菌动力学、外膜/内膜通透性、扫描电子显微镜(SEM)和流式细胞术的结果表明,新设计的肽可通过膜破坏和细胞内容物泄漏以浓度和时间依赖性方式快速杀死细菌。具体而言,最具细胞选择性的肽LGAK对利福平耐药大肠杆菌(RRE)表现出强大的抗菌活性,并防止肠杆菌中利福平耐药性的出现。此外,LGAK与利福平联合使用时能够通过外膜通透性逆转RRE中的利福平耐药性。总体而言,我们的结果表明新设计的肽有望成为抗生素替代品,将它们用作预防和逆转抗生素耐药性的佐剂是应对耐药革兰氏阴性菌风险的一种有前景的策略。

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