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Molecular modeling and design of some β-amino alcohol grafted 145-trisubstituted 123-triazoles derivatives against chloroquine sensitive 3D7 strain of

机译:一些β-氨基醇接枝的145-三取代的123-三唑衍生物对氯喹敏3D7应变的分子建模与设计

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摘要

Resistance nature of Plasmodium falciparum (P. falciparum) to the most effective antimalarial drug, Artemisinin, intimidate the global goal of total eradication of malarial. In an attempt to overcome this challenge, the research was aimed at designing derivatives of β-amino alcohol grafted 1,4,5-trisubstituted 1,2,3-triazoles with improve activity against the P. falciparum through structural modifications of the most active compound (design template), and their activity determined using the developed theoretical predictive model. To achieve this, the geometries were optimized via density functional theory (DFT) using B3LYP/6-31G∗ basis set to generate molecular descriptors for model development. Analysis of the developed model and the descriptors mean effect lead to the design of derivatives with improved activity. Five (5) theoretical models were developed, where the model {pIC50 = 5.95067(SpMin5_Bhi) - 0.0323461(RDF45m) + 0.0203865 (RDF95e) + 0.0499285 (L1m) - 3.50822} with the highest coefficient of determination (R2) of 0.9367, cross-validated R2 (Q2cv) of 0.8242, and the external validated R2 (R2pred) of 0.9462, selected as the best model. The mean effect analysis revealed descriptor SpMin5_Bhi as the most contributive. The descriptor encodes the first ionization potentials of the compounds and are influenced by electron-withdrawing/donating substituents. Hence, structural modifications of the compound with the highest activity (a design template) using electron-withdrawing substituents such as –NO2, –SO3H, -Br, –I, –CH2CH3, and –CH3 was done at a different positions, to obtain five (5) hypothetical novel compounds. The statistical results, shows the robustness, excellent prediction power, and validity of the selected model. Descriptor analysis revealed the first ionization potential (SpMin5_Bhi) to play a significant role in the activity of β-amino alcohol grafted 1,4,5-trisubstituted 1,2,3-triazoles derivatives. The five design derivatives of β-amino alcohol grafted 1,4,5-trisubstituted 1,2,3-triazoles with higher activities revealed compound 21C to have an antimalarial activity of pIC50 = 6.7573 higher than it co-designed compounds and even the standard drug. This claim could be verified through molecular docking to determine their interaction with the target protein.
机译:疟原虫(P. falciparum)对最有效的抗疟药,阿尔美学素,恐吓全球目标的抗性性质,恐吓疟疾的全球目标。为了试图克服这一挑战,该研究旨在通过最活跃的结构修改设计β-氨基醇接枝的1,4,5-三取代的1,2,3-三唑的衍生物,通过结构修改来改善对P. falciparum的活性化合物(设计模板)及其使用开发的理论预测模型确定的活性。为此,几何形状通过密度泛函理论(DFT)进行优化,使用B3LYP / 6-31G *基础设置以产生用于模型开发的分子描述符。发达模型的分析和描述符的平均效应导致具有改进活动的衍生物的设计。开发了五(5)个理论模型,其中型号{PIC50 = 5.95067(SPMIN5_BHI) - 0.0323461(RDF45M)+ 0.0203865(RDF952)+ 0.0499285(L1M) - 3.50822}具有最高的测定系数(R2),为0.9367,交叉 - 0.8242的R2(Q2CV)和0.9462的外部验证R2(R2),选择为最佳模型。平均效果分析显示Spmin5_bhi的描述符作为最具贡献。描述符对化合物的第一电离电位进行编码,并受电子抽出/捐赠取代基的影响。因此,使用诸如-NO2,-SO3H,-BR,-I,-CH2CH3和-CH3的诸如-NO2,-SO3H,-BR,-I,-CH2CH3和-CH3的诸如-NO2,-SO3,-BR,-I,-CH2和-CH3的化合物的结构修饰,以获得五(5)个假想的新型化合物。统计结果显示了所选模型的稳健性,优异的预测力和有效性。描述符分析显示了第一种电离电位(SPMIN5_BHI),在β-氨基醇接枝的1,4,5-三取代的1,2,3-三唑衍生物的活性中发挥重要作用。 β-氨基醇的五种设计衍生物具有较高活性的β-氨基醇接枝的1,4,5-三取代的1,2,3-三唑揭示了化合物21c,其具有比其共同设计的化合物高的PIC50 = 6.7573的抗疟活性甚至标准药品。可以通过分子对接来验证该权利要求,以确定它们与靶蛋白的相互作用。

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