基于分子力学的几种希夫碱对大肠杆菌抑制活性定量构效关系研究

Ozoemena Ifeoma Juliet, Ibrahim Bilikisu Onize, Eniolorunda Tolulope Praise, Agbane Isaac Ojodomo, Yusuf Aminat, N. Raimi
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摘要

由于其对大肠杆菌(E. coli)的高抑制作用,多药耐药菌株的增加需要测试和开发一套新的希夫碱基作为抗E. coli。大肠杆菌制剂遍布全球。在本研究中,遗传功能近似(GFA)定量构效关系(QSAR)分析了选定的希夫碱基与抗e。杆菌的活动。采用不同的分子描述符和Hansch方法进行分析,得到一个统计显著的hepta参数模型为最强模型,其平方相关系数(R2) = 0.828,调整的平方相关系数(R2) = 0.775,交叉验证的相关系数(Q2) = 0.691, R2与Q2之间的差异,Q2 (R2 - Q2) = 0.137,外部预测(R2pred.) = 0.751,缺乏拟合(LOF)为0.067为最佳模型。发展模型表明,描述子Hmin和VP-6对观察到的抗-E具有主导作用。大肠杆菌的希夫碱活性。Insilico技术当然可以为这类化合物提供快速、廉价和安全的定量风险评估。据设想,在这项工作中发现的QSAR结果将为有效的抗e的设计提供关键的结构见解。基于希夫碱的大肠杆菌药物
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular Mechanics-Based Quantitative Structure-Activity Relationship Study on the Inhibitory Activity of Some Schiff Bases against Escherichia coli
Due to their high inhibitory action against Escherichia coli (E. coli), the rise of multidrug-resistant strains of the bacteria necessitates the testing and development of a new set of Schiff bases as anti-E. coli agents worldwide. In this study, the Genetic function approximation (GFA) Quantitative structure-activity relationship (QSAR) analyzes selected Schiff bases with anti-E. coli activity. This was done using different molecular descriptors and Hansch's approach, which results in the production of one statistically significant hepta parameter model as the strongest model with a squared correlation coefficient (R2) = 0.828, adjusted squared correlation coefficient (R2adj) = 0.775, cross-validated correlation coefficient (Q2) = 0.691, Difference between R2 and Q2, Q2 (R2 - Q2) = 0.137, external prediction (R2pred.) = 0.751 and lack of fit (LOF) of 0.067 value were selected as the best model based on its sound statistical parameters. The development model demonstrated the predominance of the descriptors Minimum H E State (Hmin) and Valence path order 6 (VP-6) in influencing the observed anti-E. coli activity of Schiff bases. Insilico techniques can certainly provide a quick, inexpensive and safe quantitative risk assessment for this class of compounds. It is envisaged that the QSAR results discovered in this work will provide crucial structural insights towards the design of effective anti-E. coli drugs based on Schiff bases
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