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Molecular Modeling Studies of Substituted 2,4,5-Trisubstituted Triazolinones Aryl and Nonaryl Derivatives as Angiotensin II AT1Receptor Antagonists

机译:取代的2,4,5-三唑酮芳基和非对衍生物作为血管紧张素II AT1recopor拮抗剂的分子模拟研究

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摘要

The development of new therapies to treat hypertension and cardiovascular diseases. A series of 2,4,5-trisubstituted triazolinones aryl and nonaryl derivatives were subjected to Group-based QSAR, k-nearest neighbour molecular field analysis, and pharmacophore mapping. Multiple linear regression (MLR) methodology coupled with feature selection method namely simulated annealing, was applied to derive Group based QSAR models which were further validated for statistical significance and predictive ability by internal and external validation. The best physicochemical descriptors, namely, R1chiV1, R2T_N_O_3, R2chlorines count, R2T_C_N_4, and R2SssNHE index, contribute significantly to the biological activity. The statistically significant best Group-based QSAR model has r2=0.8357 and q2=0.7266 with pred_r2=0.8138. The 3D-QSAR studies were performed using the simulated annealing selection k-nearest neighbor molecular field analysis approach; a leave-one-out cross-validated correlation coefficient q2=0.7461 and predicate activity pred_r2=0.7790 were obtained. Contour maps using this approach showed that steric, electrostatic, and hydrophobic effects dominantly determine binding affinities. Pharmacophore hypotheses were generated by the mol sign module and found to contain common features like hydrogen bond donor acceptor, donor, positive, negative ionizable, and hydrophobic features. This model can be used for preliminary screening of large number of substituted 3H-1,-2,-4 triazolinone aryl and nonaryl derivatives. The information rendered by 3D-QSAR models may lead to a better understanding of structural requirements of triazolinone aryl and nonaryl derivatives and also aid in designing novel potent antihypertensive molecules.
机译:新疗法的发展治疗高血压和心血管疾病。对基于基团的QSAR,K最近邻分子场分析和药物团测绘进行一系列2,4,5-三唑烷酮芳基和非含有衍生物。耦合具有特征选择方法的多元线性回归(MLR)方法即模拟退火,应用于通过内部和外部验证进一步验证基于基于基于基于QSAR模型的QSAR模型,通过内部和外部验证进一步验证了统计显着性和预测能力。最佳的物理化学描述符,即R1Chiv1,R2T_N_O_3,R 2氯计数,R2T_N_4和R2SSNHE指数对生物活性有显着贡献。统计上显着的基于组的基于QSAR模型具有R2 = 0.8357和Q2 = 0.7266,具有PEAT_R2 = 0.8138。使用模拟退火选择K最近邻分子场分析方法进行3D-QSAR研究;获得休留次交叉验证的相关系数Q2 = 0.7461和谓词活性PEAT_R2 = 0.7790。使用这种方法的轮廓图显示,静置,静电和疏水效应显着地确定结合亲和力。 Pharmacophore假设由MOL标志模块产生,发现包含氢键供体受体,供体,正,负可电离和疏水特征等共同的特征。该模型可用于大量取代的3H-1,-2,-4三唑烷芳基和非含量衍生物的初步筛选。 3D-QSAR模型呈现的信息可能导致更好地理解三唑胺芳基和非含有衍生物的结构要求,也有助于设计新型有效的抗高血压分子。

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