呋喃-2-羧酰胺的合成及抗菌膜评价。

IF 3.6 4区 医学 Q2 CHEMISTRY, MEDICINAL
ChemMedChem Pub Date : 2025-01-20 DOI:10.1002/cmdc.202400879
Eduardo Hernández-Vázquez, Ana C Muñoz-Estrada, Cesar E Tovar-Roman, Carlos D García-Mejía, Rodolfo García-Contreras
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引用次数: 0

摘要

报道了具有抗铜绿假单胞菌活性的呋喃-2-羧酰胺的多样性收集。该设计涉及用呋喃-2-羧基酰胺部分取代不稳定的呋喃酮环的生物等构,以探索其对生物活性的影响。经评价,碳酰肼类和三唑类具有显著的抗膜活性,其中4b的抑菌效果最显著(抑制58%)。此外,用三种活性化合物处理P. aeruginosa降低了一些毒力因子(pyocyanin和蛋白酶),证实了衍生物的抗群体感应特性,并表明LasR可能是一个可行的靶点。分子对接表明,碳酰肼类化合物与相关呋喃酮类化合物在LasR内具有相似的结合模式,对接得分较高,而较高的衍生物的硅亲和力降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diversity-oriented synthesis and antibiofilm evaluation of furan-2-carboxamides.

A diversity-oriented collection of furan-2-carboxamides with antibiofilm activity against P. aeruginosa is reported. The design involved the bioisosteric replacement of the labile furanone ring by a furan-2-carboxamide moiety to explore its influence on biological activity. After evaluation, carbohydrazides and triazoles showed significant antibiofilm activity, and 4b resulted in the most remarkable compound (58% inhibition). Furthermore, treating P. aeruginosa with three active compounds reduced some virulence factors (pyocyanin and proteases), confirming the anti-quorum sensing properties of the derivatives and suggesting LasR as a plausible target. Molecular docking proposed that carbohydrazides share a similar binding mode to related furanones inside LasR with an excellent docking score, while higher derivatives diminished in silico affinity.

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来源期刊
ChemMedChem
ChemMedChem 医学-药学
CiteScore
6.70
自引率
2.90%
发文量
280
审稿时长
1 months
期刊介绍: Quality research. Outstanding publications. With an impact factor of 3.124 (2019), ChemMedChem is a top journal for research at the interface of chemistry, biology and medicine. It is published on behalf of Chemistry Europe, an association of 16 European chemical societies. ChemMedChem publishes primary as well as critical secondary and tertiary information from authors across and for the world. Its mission is to integrate the wide and flourishing field of medicinal and pharmaceutical sciences, ranging from drug design and discovery to drug development and delivery, from molecular modeling to combinatorial chemistry, from target validation to lead generation and ADMET studies. ChemMedChem typically covers topics on small molecules, therapeutic macromolecules, peptides, peptidomimetics, and aptamers, protein-drug conjugates, nucleic acid therapies, and beginning 2017, nanomedicine, particularly 1) targeted nanodelivery, 2) theranostic nanoparticles, and 3) nanodrugs. Contents ChemMedChem publishes an attractive mixture of: Full Papers and Communications Reviews and Minireviews Patent Reviews Highlights and Concepts Book and Multimedia Reviews.
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