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Anabolic and androgenic activities of 19-nor-testosterone steroids: QSAR study using quantum and physicochemical molecular descriptors

机译:19-去睾酮类固醇的同化和雄激素活性:QSAR研究使用量子和理化分子描述符

摘要

Quantitative structure-activity relationship (QSAR) study of 19-nor-testosterone steroids family was performed using quantum and physicochemical molecular descriptors. The quantum-chemical descriptors were calculated using semiempirical calculations. The descriptor values were statistically correlated using multi-linear regression analysis. The QSAR study indicated that the electronic properties of these derivatives have significant relationship with observed biological activities. The found QSAR equations explain that the energy difference between the LUMO and HOMO, the total dipole moment, the chemical potential and the value of the net charge of different carbon atoms in the steroid nucleus showed key interaction of these steroids with their anabolic-androgenic receptor binding site. The calculated values predict that the 17α-cyclopropyl-17β, 3β-hydroxy-4-estrene compound presents the highest anabolic-androgenic ratio (AAR) and the 7α-methyl-17β-acetoxy-estr-4-en-3-one compound the lowest AAR. This study might be helpful in the future successful identification of >real> or >virtual> anabolic-androgenic steroids. © 2011 Elsevier Ltd. All rights reserved.
机译:19-去睾酮类固醇家族的定量构效关系(QSAR)研究是使用量子和物理化学分子描述符进行的。使用半经验计算来计算量子化学描述符。使用多线性回归分析对描述符值进行统计相关。 QSAR研究表明,这些衍生物的电子性质与观察到的生物活性有着显着的关系。所发现的QSAR方程解释了LUMO和HOMO之间的能量差,总偶极矩,化学势以及类固醇核中不同碳原子的净电荷值表明这些类固醇与其合成代谢雄激素受体之间存在关键相互作用结合位点。计算值预测17α-环丙基-17β,3β-羟基-4-雌烯化合物具有最高的合成代谢-雄激素比(AAR)和7α-甲基-17β-乙酰氧基-雌激素-4-en-3-one化合物最低的AAR。这项研究可能对将来成功鉴定>真正>或>虚拟>同化雄激素类固醇有帮助。 ©2011 Elsevier Ltd.保留所有权利。

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