首页> 外文期刊>Journal of enzyme inhibition and medicinal chemistry. >Quantitative structure-activity relationship analysis of 2,3-diaryl indoles as selective cyclooxygenase-2 inhibitors.
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Quantitative structure-activity relationship analysis of 2,3-diaryl indoles as selective cyclooxygenase-2 inhibitors.

机译:2,3-二芳基吲哚作为选择性环氧合酶-2抑制剂的定量构效关系分析。

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Quantitative structure-activity relationship (QSAR) studies have been performed on a combined series of 2-sulfonylphenyl-3-phenyl-indoles and 2-phenyl-3-sulfonylphenyl-indoles with a common 2,3 vicinal diaryl indole scaffold, recently reported as selective COX-2 inhibitors. This study is aimed to throw light on this, special class of diaryl heterocyclic family of selective COX-2 inhibitors. A preliminary Fujita-Ban analysis on 32 compounds provided valuable insights about the role of different substituents R1 and R2 around the 2,3 vicinal diaryl rings and R3, at position-5 of the central indole moiety in explaining their in vitro COX-2 inhibitory activity. The contribution of R1, R2, R3 towards COX-2 inhibitory activity resulted in statistically significant linear multiple regression equation with r = 0.942, r(2) = 0.888, s = 0.532 and F = 7.92, q(2) = 0.516 for 29 compounds. Fujita-Ban model shows a negative contribution of SO2NH2 and SO2CH3 at the R1 position; a negative contribution of 4-Cl, 2-Cl, 3-Cl, 3-CH3, 4-SO2CH3, 4-Br and a positive contribution of 4-OCH3, 4-CH3 substituents at the R2 position. At the R3 position a negative contribution of F, Br and a positive contribution of Cl, CH3 is encountered. In the light of our preliminary investigation that electron donating groups at the para position of R2 are conducive for COX-2 inhibitory activity from the Fujita-Ban model, we attempted to correlate the COX-2 inhibitory activity with quantum chemical descriptors of semi-empirical AM1 optimized geometries of the title compounds. Correlation analysis showed the molecular electronic descriptor, MOPAC total energy as crucial in governing COX-2 inhibitory activity of all the reported 41 compounds.
机译:定量结构-活性关系(QSAR)研究已在2-磺酰基苯基-3-苯基-吲哚和2-苯基-3-磺酰基苯基-吲哚与常见的2,3邻位二芳基吲哚骨架的组合系列中进行,最近报道为选择性COX-2抑制剂。这项研究旨在阐明选择性COX-2抑制剂这一特殊类别的二芳基杂环家族。对32种化合物的初步Fujita-Ban分析提供了有价值的见解,说明了在中心吲哚部分5位置的2,3邻位二芳基环和R3周围的不同取代基R1和R2在解释其体外COX-2抑制作用方面的作用活动。 R1,R2,R3对COX-2抑制活性的贡献导致统计学上显着的线性多元回归方程,其中r = 0.942,r(2)= 0.888,s = 0.532和F = 7.92,q(2)= 0.516(29)化合物。 Fujita-Ban模型显示R1位置的SO2NH2和SO2CH3负相关; 4-Cl,2-Cl,3-Cl,3-CH3、4-SO2CH3、4-Br的负贡献和4-OCH3、4-CH3取代基在R2位置的正贡献。在R3位置遇到F,Br的负贡献和Cl,CH3的正贡献。根据我们的初步研究,R2对位的给电子基团有助于Fujita-Ban模型的COX-2抑制活性,我们试图将COX-2抑制活性与半经验的量子化学描述子相关联。 AM1优化了标题化合物的几何形状。相关分析表明,分子电子描述符MOPAC总能量对于控制所有报告的41种化合物的COX-2抑制活性至关重要。

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