Mitra Indrani, Saha Achintya, Roy Kunal
Drug Theoretics and Cheminformatics Laboratory, Department of Pharmaceutical Technology, Jadavpur University, Kolkata 700032, India.
Sci Pharm. 2013 Jan-Mar;81(1):57-80. doi: 10.3797/scipharm.1208-01. Epub 2012 Sep 9.
The inability of the systemic antioxidants to alleviate the exacerbation of free radical formation from metabolic outputs and environmental pollutants claims an urgent demand for the identification and design of new chemical entities with potent antioxidant activity. In the present work, different QSAR approaches have been utilized for identifying the essential structural attributes imparting a potential antioxidant activity profile of the coumarin derivatives. The descriptor-based QSAR model provides a quantitative outline regarding the structural prerequisites of the molecules, while 3D pharmacophore and HQSAR models emphasize the favourable spatial arrangement of the various chemical features and the crucial molecular fragments, respectively. All the models infer that the fused benzene ring and the oxygen atom of the pyran ring constituting the parent coumarin nucleus capture the prime pharmacophoric features, imparting superior antioxidant activity to the molecules. The developed models may serve as indispensable query tools for screening untested molecules belonging to the class of coumarin derivatives.
全身抗氧化剂无法缓解代谢产物和环境污染物产生的自由基形成加剧的情况,这迫切需要鉴定和设计具有强大抗氧化活性的新化学实体。在本研究中,已采用不同的定量构效关系(QSAR)方法来确定赋予香豆素衍生物潜在抗氧化活性特征的基本结构属性。基于描述符的QSAR模型提供了关于分子结构先决条件的定量概述,而三维药效团模型和全息定量构效关系(HQSAR)模型分别强调了各种化学特征的有利空间排列和关键分子片段。所有模型都推断,构成母体香豆素核的稠合苯环和吡喃环的氧原子具有主要的药效团特征,赋予分子卓越的抗氧化活性。所开发的模型可作为不可或缺的查询工具,用于筛选属于香豆素衍生物类别的未测试分子。