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吡罗昔康构象结构的理论和光谱研究。

A theoretical and spectroscopic study of conformational structures of piroxicam.

机构信息

Instituto de Química, Universidade Estadual de Campinas, PO Box 6154, 13083-970 Campinas, São Paulo, Brazil.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2010 Feb;75(2):901-7. doi: 10.1016/j.saa.2009.12.031. Epub 2009 Dec 16.

Abstract

Piroxicam (PRX) has been widely studied in an attempt to elucidate the causes and mechanisms of its side effects, mainly the photo-toxicity. In this paper fluorescence spectra in non-protic solvents and different polarities were carried out along with theoretical calculations. Preliminary potential surfaces of the keto and enol forms were obtained at AM1 level of theory providing the most stable conformers, which had their structure re-optimized through the B3LYP/CEP-31G(d,p) method. From the optimized structures, the electronic spectra were calculated using the TD-DFT method in vacuum and including the solvent effect through the PCM method and a single water molecule near PRX. A new potential surface was constructed to the enol tautomer at DFT level and the most stable conformers were submitted to the QST2 calculations. The experimental data showed that in apolar media, the solution fluorescence is raised. Based on conformational analysis for the two tautomers, keto and enol, the results indicated that the PRX-enol is the main tautomer related to the drug fluorescence, which is reinforced by the spectra results, as well as the interconvertion barrier obtained from the QST2 calculations. The results suggest that the PRX one of the enol conformers presents great possibility of involvement in the photo-toxicity mechanisms.

摘要

吡罗昔康(PRX)已被广泛研究,试图阐明其副作用的原因和机制,主要是光毒性。本文在非质子溶剂和不同极性中进行了荧光光谱研究,并进行了理论计算。在 AM1 理论水平上获得了酮式和烯醇式两种形式的初步势能面,提供了最稳定的构象,然后通过 B3LYP/CEP-31G(d,p)方法对其结构进行了重新优化。从优化的结构中,使用 TD-DFT 方法在真空状态下计算了电子光谱,并通过 PCM 方法和 PRX 附近的单个水分子考虑了溶剂效应。在 DFT 水平上构建了一个新的烯醇互变异构势能面,并将最稳定的构象提交给 QST2 计算。实验数据表明,在非极性介质中,溶液荧光增强。基于酮式和烯醇式两种互变异构体的构象分析,结果表明,PRX-烯醇是与药物荧光相关的主要互变异构体,这一结果得到了光谱结果的支持,以及 QST2 计算得出的互变异构体转化势垒的支持。结果表明,PRX 可能有一种烯醇构象参与光毒性机制。

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