Theoretical study by gaussian of some molecular properties of the benzodiazepine derivatives

S. Abirou, A. El assyry, B. Benali, Z. Lazar, A. Boucetta, M. Massoui, B. Lakhrissi, C. Jarmoumi, D. Mondieig
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Abstract

1,5-benzodiazepin-2,4-dione is not a planar molecule, in which the structure is in three dimensions composed of a six membered phenyl ring condensed with a seven membered heterocyclic (compound 1). We were interested by the molecular properties of these compounds because several publications recently indicated that some benzodiazepine derivatives have been studied because of their biological activity as carcinostatic compounds and were highly effective for the relief of anxiety. They have a lower potential for addiction than many other drugs that were used earlier and are less likely to cause death or serious, lasting harm when taken in overdoses. There are now several dozen benzodiazepine drugs in clinical use worldwide, although use has become less popular because of side effects, including dependence. The various compounds appear to differ primarily in their pharmacokinetics, that is, the speed with which they are taken up and eliminated by the body, rather than in differences in their clinical effects. This pharmacological interest has motivated the search for methods of synthesis of substituted benzodiazepines. Because of this pharmacological interest, and in absence of fundamental spectroscopic data in the literature on these compounds, we considered it useful in this work to discuss some of their molecular properties of potential interest. These last could explore of advantage the reactivity and the mechanisms implying the part of benzodiazepine in the biological systems like those mentioned above. For this purpose, we studied in terms of information by the method of Gaussian the molecular properties of benzodiazepine 1 oneself as well as its four derivatives: the 3-chloro-benzodiazepine 2, the 3-methyl-benzodiazepine 3, the 7-methyle-benzodiazepine 4 and the 7,11-dimethylbenzodiazepine 5.
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用高斯理论研究苯二氮卓类衍生物的一些分子性质
1,5-苯二氮卓-2,4-二酮不是平面分子,其结构是由六元苯环与七元杂环(化合物1)缩合而成的三维结构。我们对这些化合物的分子性质很感兴趣,因为最近一些出版物表明,一些苯二氮卓衍生物由于其作为抗癌化合物的生物活性而被研究,并且对缓解焦虑非常有效。与以前使用过的许多其他药物相比,它们上瘾的可能性较低,并且在过量服用时不太可能造成死亡或严重、持久的伤害。目前,全世界临床使用的苯二氮卓类药物有几十种,但由于其副作用(包括依赖性),使用已不那么普遍。不同的化合物似乎主要在它们的药代动力学上不同,即它们被人体吸收和消除的速度,而不是在它们的临床效果上的差异。这种药理学上的兴趣促使人们寻找合成取代苯二氮卓类药物的方法。由于这种药理意义,并且在这些化合物的文献中缺乏基本的光谱数据,我们认为在这项工作中讨论它们的一些潜在的分子特性是有用的。这些研究有利于探索苯二氮卓类药物在上述生物系统中的反应性和作用机制。为此,我们利用高斯法研究了苯二氮卓1本身及其衍生物3-氯-苯二氮卓2、3-甲基-苯二氮卓3、7-甲基-苯二氮卓4和7,11-二甲基-苯二氮卓5的分子性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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