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通过酰肼法合成环状六肽及其抗菌活性评估。

Synthesis of Cyclic Hexapeptides via the Hydrazide Method and Evaluation of Their Antibacterial Activities.

作者信息

Cui Yunfei, Liu Meng, Ruan Binghui, Liao Zhouyuji, Tang Xue, Zhangsun Dongting, Wu Yong, Luo Sulan

机构信息

Guangxi Key Laboratory of Special Biomedicine, School of Medicine, Guangxi University, Nanning 530004, China.

Key Laboratory of Tropical Biological Resources of Ministry of Education, Hainan University, Haikou 570228, China.

出版信息

Molecules. 2025 Jun 3;30(11):2444. doi: 10.3390/molecules30112444.

Abstract

Antimicrobial peptides (AMPs) have emerged as promising candidates in the fight against multidrug-resistant pathogens due to their broad-spectrum antimicrobial activity and low potential for resistance development. However, their clinical application is limited by poor stability and susceptibility to enzymatic degradation. This study aims to address these limitations by synthesizing a series of cyclic hexapeptides using the hydrazide method and evaluating their antimicrobial activity and stability. The hydrazide method facilitated the synthesis of 11 cyclic peptides through a reaction between C-terminal hydrazides and cysteine-containing peptides. Antimicrobial assays showed that Cy-f2 and Cy-f4 exhibited potent inhibitory effects against different kinds of bacteria, including , , and . Hemolysis assays revealed minimal red blood cell lysis at effective antimicrobial concentrations, indicating good biocompatibility. Stability tests demonstrated improved stability of the cyclic peptides compared to linear counterparts in SGF and 80 °C. In conclusion, the cyclic hexapeptides synthesized in this study demonstrate excellent antimicrobial activity, enhanced stability, and low toxicity, suggesting their potential as new candidates for treating drug-resistant bacterial infections.

摘要

抗菌肽(AMPs)因其广谱抗菌活性和低耐药性发展潜力,已成为对抗多重耐药病原体的有前景的候选物。然而,它们的临床应用受到稳定性差和易受酶降解的限制。本研究旨在通过使用酰肼法合成一系列环六肽并评估其抗菌活性和稳定性来解决这些限制。酰肼法通过C端酰肼与含半胱氨酸的肽之间的反应促进了11种环肽的合成。抗菌试验表明,Cy-f2和Cy-f4对不同种类的细菌,包括 、 和 表现出强大的抑制作用。溶血试验显示在有效抗菌浓度下红细胞溶血最小,表明具有良好的生物相容性。稳定性测试表明,与线性对应物相比,环肽在模拟胃液(SGF)和80°C条件下稳定性有所提高。总之,本研究中合成的环六肽表现出优异的抗菌活性、增强的稳定性和低毒性,表明它们作为治疗耐药细菌感染新候选物的潜力。

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