Department of Medicinal Chemistry, Faculty of Pharmacy, Isfahan University of Medical Sciences, 81746-73461 Isfahan, Iran.
Eur J Med Chem. 2010 Mar;45(3):1113-8. doi: 10.1016/j.ejmech.2009.12.010. Epub 2009 Dec 28.
Quantitative structure activity relationships (QSAR) of anti-cancer isatin derivatives were discovered by multiple linear regressions (MLR) and genetic algorithm partial least squares (GA-PLS) methods. Topological, chemical, geometrical and functional groups descriptors were found to be effective parameters on the cytotoxic activity. The positive effects of the number of halogen atoms and the number of total secondary carbons, and the negative effects of the number of secondary amides, and the number of ketones on the anti-cancer activity were in agreement with previous SAR studies. Hansch analysis showed the importance of lipophilic R(3) and R(5) substituents. Between MLR and GA-PLS, MLR represented superior results with a high statistical quality (R(2)=0.92 and Q(2)=0.90) for predicting the activity of the compounds.
通过多元线性回归(MLR)和遗传算法偏最小二乘法(GA-PLS)方法,发现了抗癌色满衍生物的定量构效关系(QSAR)。拓扑、化学、几何和官能团描述符被发现是对细胞毒性活性有影响的有效参数。卤素原子数和总仲碳原子数的增加以及仲酰胺数和酮数的减少对抗癌活性有积极影响,这与之前的 SAR 研究一致。Hansch 分析表明亲脂性 R(3)和 R(5)取代基的重要性。在 MLR 和 GA-PLS 之间,MLR 表现出更高的预测化合物活性的统计质量(R(2)=0.92 和 Q(2)=0.90)。