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蜗牛源肽 Cm-p5 的环状单体和二聚体衍生物对病毒和多药耐药菌的抗菌活性。

Antimicrobial Activity of Cyclic-Monomeric and Dimeric Derivatives of the Snail-Derived Peptide Cm-p5 against Viral and Multidrug-Resistant Bacterial Strains.

机构信息

Center for Protein Studies, Faculty of Biology, University of Havana, 25 St, La Habana 10400, Cuba.

General Chemistry Department, Faculty of Chemistry and Center for Natural Products Research, Faculty of Chemistry, University of Havana, Zapata street, La Habana 10400, Cuba.

出版信息

Biomolecules. 2021 May 17;11(5):745. doi: 10.3390/biom11050745.

Abstract

Cm-p5 is a snail-derived antimicrobial peptide, which demonstrated antifungal activity against the pathogenic strains of . Previously we synthetized a cyclic monomer as well as a parallel and an antiparallel dimer of Cm-p5 with improved antifungal activity. Considering the alarming increase of microbial resistance to conventional antibiotics, here we evaluated the antimicrobial activity of these derivatives against multiresistant and problematic bacteria and against important viral agents. The three peptides showed a moderate activity against ,   (ESBL), and , with MIC values > 100 µg/mL. They exerted a considerable activity with MIC values between 25-50 µg/mL against and . In addition, the two dimers showed a moderate activity against PA14. The three Cm-p5 derivatives inhibited a virulent extracellular strain of , in a dose-dependent manner. Moreover, they inhibited Herpes Simplex Virus 2 (HSV-2) infection in a concentration-dependent manner, but had no effect on infection by the Zika Virus (ZIKV) or pseudoparticles of Severe Acute Respiratory Syndrome Corona Virus 2 (SARS-CoV-2). At concentrations of >100 µg/mL, the three new Cm-p5 derivatives showed toxicity on different eukaryotic cells tested. Considering a certain cell toxicity but a potential interesting activity against the multiresistant strains of bacteria and HSV-2, our compounds require future structural optimization.

摘要

Cm-p5 是一种源自蜗牛的抗菌肽,对致病性 具有抗真菌活性。此前,我们合成了一种环单体以及 Cm-p5 的平行和反平行二聚体,具有改善的抗真菌活性。考虑到微生物对传统抗生素的耐药性令人担忧地增加,我们在这里评估了这些衍生物对多药耐药和有问题的细菌以及重要病毒制剂的抗菌活性。这三种肽对 、 (ESBL)和 具有中等活性,MIC 值>100 µg/mL。它们对 和 表现出相当大的活性,MIC 值在 25-50 µg/mL 之间。此外,这两个二聚体对 PA14 具有中等活性。三种 Cm-p5 衍生物以剂量依赖性方式抑制了一种毒力强的细胞外 株。此外,它们以浓度依赖性方式抑制单纯疱疹病毒 2(HSV-2)感染,但对寨卡病毒(ZIKV)或严重急性呼吸综合征冠状病毒 2(SARS-CoV-2)假型颗粒感染没有影响。在 >100 µg/mL 的浓度下,三种新的 Cm-p5 衍生物对测试的不同真核细胞表现出毒性。考虑到一定的细胞毒性,但对多药耐药菌和 HSV-2 具有潜在的有趣活性,我们的化合物需要进一步的结构优化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1ee/8156702/1b878a76493c/biomolecules-11-00745-g001.jpg

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