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抗炎药安灭酸及其类似物的定量构效关系和构象分析。

QSAR and conformational analysis of the antiinflammatory agent amfenac and analogues.

作者信息

Ruiz J, López M, Milà J, Lozoya E, Lozano J J, Pouplana R

机构信息

Department Farmàcia, Facultat de Farmàcia, Universitat de Barcelona, Spain.

出版信息

J Comput Aided Mol Des. 1993 Apr;7(2):183-98. doi: 10.1007/BF00126444.

Abstract

The new nonsteroidal antiinflammatory drug (NSAID) arylacetic amfenac (2-amino-3-benzoylphenylacetic acid) and 19 substituted derivatives were studied in order to correlate the biological activities with the structure-related parameters. The geometry of amfenac in neutral and anionic form was totally optimized, starting from standard geometries and crystallographic data, using semiempirical AM1 and MNDO quantum-mechanical methods. Conformational analysis shows the existence of a rigid structure for rotations of the acetic acid chain (alpha degrees) and the central carbonyl group (gamma degrees) around the bonds with the phenylamine ring, whereas the carboxyl group (beta degrees) and the phenyl ring of the benzoyl group (delta degrees) can rotate almost freely. Electrostatic potential maps were analyzed and showed that the electrostatic orientation effect seems to make an important contribution to the binding of the active compounds to prostaglandin synthase. An electrostatic orientation model of the binding site is proposed. The frontier orbital charge distribution was also described for each compound. On the other hand, steric, electronic and hydrophobic (log P) parameters were calculated and QSAR analysis showed that the most significant parameter for the antiinflammatory activity was the pi-electron density of the HOMO orbital in the second aromatic ring. These results suggest a possible electronic charge transfer between the aromatic fragments and the receptor.

摘要

为了将生物活性与结构相关参数关联起来,对新型非甾体抗炎药(NSAID)芳基乙酸氨芬酸(2-氨基-3-苯甲酰基苯乙酸)及其19种取代衍生物进行了研究。从标准几何结构和晶体学数据出发,使用半经验AM1和MNDO量子力学方法,对中性和阴离子形式的氨芬酸几何结构进行了完全优化。构象分析表明,围绕与苯胺环相连的键,乙酸链(α度)和中心羰基(γ度)的旋转存在刚性结构,而羧基(β度)和苯甲酰基的苯环(δ度)几乎可以自由旋转。对静电势图进行了分析,结果表明静电取向效应似乎对活性化合物与前列腺素合酶的结合起重要作用。提出了结合位点的静电取向模型。还描述了每种化合物的前沿轨道电荷分布。另一方面,计算了空间、电子和疏水(log P)参数,定量构效关系(QSAR)分析表明,抗炎活性最重要的参数是第二个芳香环中HOMO轨道的π电子密度。这些结果表明芳香片段与受体之间可能存在电子电荷转移。

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