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新型取代 3,4-二甲基-1H-吡咯-2-甲酰胺/脒基类似物的简便合成及分子对接及其抗微生物和抗真菌性质。

Facile Syntheses and Molecular-Docking of Novel Substituted 3,4-Dimethyl-1H-pyrrole-2-carboxamide/carbohydrazide Analogues with Antimicrobial and Antifungal Properties.

机构信息

School of Chemical Sciences, North Maharashtra University, Jalgaon 425001, India.

Department of Biochemistry, Maharshi Dayanand University, Rohtak 124001, India.

出版信息

Molecules. 2018 Apr 11;23(4):875. doi: 10.3390/molecules23040875.

Abstract

The article describes the use of facile one-pot, high-yielding reactions to synthesize substituted 3,4-dimethyl-1-pyrrole-2-carboxamides - and carbohydrazide analogues - as potential antifungal and antimicrobial agents. The structural identity and purity of the synthesized compounds were assigned based on appropriate spectroscopic techniques. Synthesized compounds were assessed in vitro for antifungal and antibacterial activity. The compounds , and were found to be the most potent against , with MIC values of 0.039 mg/mL. The compound bearing a 2, 6-dichloro group on the phenyl ring was found to be the most active broad spectrum antibacterial agent with a MIC value of 0.039 mg/mL. The mode of action of the most promising antifungal compounds (one representative from each series; and ) was established by their molecular docking with the active site of sterol 14α-demethylase. Molecular docking studies revealed a highly spontaneous binding ability of the tested compounds in the access channel away from catalytic heme iron of the enzyme, which suggested that the tested compounds inhibit this enzyme and would avoid heme iron-related deleterious side effects observed with many existing antifungal compounds.

摘要

本文描述了使用简便的一锅法、高产率反应合成取代的 3,4-二甲基-1-吡咯-2-甲酰胺 - 和碳酰肼类似物 - 作为潜在的抗真菌和抗菌剂。根据适当的光谱技术确定了合成化合物的结构同一性和纯度。合成的化合物在体外评估了抗真菌和抗菌活性。化合物 、 和 对 最有效,MIC 值为 0.039 mg/mL。带有 2,6-二氯苯基的化合物 是最有效的广谱抗菌剂,MIC 值为 0.039 mg/mL。通过与甾醇 14α-脱甲基酶的活性位点对接,确定了最有前途的抗真菌化合物(每个系列一个代表; 和 )的作用模式。分子对接研究表明,测试化合物在远离酶的催化血红素的入口通道中具有高度自发的结合能力,这表明测试化合物抑制这种酶,并将避免许多现有抗真菌化合物中观察到的血红素铁相关的有害副作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67ef/6017109/e2d46107ee70/molecules-23-00875-g001.jpg

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