Department of Physics, APC College, Kolkata, India.
J Mol Model. 2012 Jun;18(6):2621-31. doi: 10.1007/s00894-011-1274-2. Epub 2011 Nov 13.
In a pursuit of electronic level understanding of the antioxidant activity of a series of flavonoids, quantitative structure-activity relationship (QSAR) studies have been carried out using density functional theory (DFT) based quantum chemical descriptors. The best QSAR model have been selected for which the computed square correlation coefficient r(2) = 0.937 and cross-validated squared correlation coefficient q(2) =0.916. The QSAR model indicates that hardness (η), group electrophilic frontier electron density (F(E)(A)) and group philicity (ω(B)(+)) of individual molecules are responsible for in vitro biological activity. To the best our knowledge, the group electrophilic frontier electron density (F(E)(A)) has been used for the first time to explain the radical scavenging activity (RSA) of flavonoids. The excellent correlation between the RSA and the above mentioned DFT based descriptors lead us to predict new antioxidants having very good antioxidant activity.
为了对一系列类黄酮的抗氧化活性进行电子水平的理解,我们使用基于密度泛函理论(DFT)的量子化学描述符进行了定量构效关系(QSAR)研究。我们选择了最佳的 QSAR 模型,其计算的平方相关系数 r(2) = 0.937,交叉验证的平方相关系数 q(2) = 0.916。QSAR 模型表明,单个分子的硬度(η)、基团亲电性前沿电子密度(F(E)(A))和基团给电子性(ω(B)(+))负责体外生物活性。据我们所知,基团亲电性前沿电子密度(F(E)(A))首次被用于解释类黄酮的清除自由基活性(RSA)。RSA 与上述基于 DFT 的描述符之间的优异相关性使我们能够预测具有非常好的抗氧化活性的新型抗氧化剂。