一些抗结核查尔酮衍生物在量子力学反应性描述符方面的药物活性相关性

T. Chakraborty, D. C. Ghosh
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引用次数: 5

摘要

在QSPR/QSAR范式下,对多达15种抗结核药物的已知药物活性与计算的量子力学全局反应性描述符(如全局硬度、全局柔软度和全局亲电性指数)进行了比较研究。对比研究表明,实验测定的药物分子活性,包括其在母体部分侧取代的变化,与理论描述符很好地相关。分子的整体亲电性指数可用于预测药物受体相互作用的机制。此外,作者预测QSAR模型将抗结核活性与量子力学描述符(如整体硬度、电负性、整体柔软性和整体亲电性指数)相关联。利用PM3方法计算的所有四个全局描述符的多元线性模型,有效地预测了一系列查尔酮衍生物的抗结核活性。R2(0.961)的高值支持该特定模型的有效性。预测和实验活动之间良好的相关性验证了这一努力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Correlation of the Drug Activities of Some Anti-Tubercular Chalcone Derivatives in Terms of the Quantum Mechanical Reactivity Descriptors
Under the QSPR/QSAR paradigm, a comparative study is made of the known drug activity of as many as 15 anti-tubercular drugs vis-A -vis the computed quantum mechanical global reactivity descriptors like global hardness, global softness and global electrophilicity index. The comparative study reveals that the experimentally determined activity of drug molecules, including its variation with side substitution on the parent moiety, correlate nicely with the theoretical descriptors. The global electrophilicity index of a molecule may be useful in predicting the mechanism of the drug receptor interaction. In addition, the authors predicted the QSAR models to correlate the antitubercular activities with quantum mechanical descriptors like global hardness, electronegativity, global softness, and global electrophilicity index. The multilinear model using all four global descriptors computed through PM3 method, effectively predicts the antitubercular activities for a series of chalcone derivatives. The high value of R2 (0.961) supports the validity of that particular model. A nice correlation between the predicted and experimental activities validates the effort.
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