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用CHIH-DFT方法测定三种抗结核化合物(利福平、异烟肼和吡嗪酰胺)的分子结构、红外光谱、紫外光谱及化学反应活性。

CHIH-DFT determination of the molecular structure infrared spectra, UV spectra and chemical reactivity of three antitubercular compounds: Rifampicin, Isoniazid and Pyrazinamide.

作者信息

Favila Alejandra, Gallo Marco, Glossman-Mitnik Daniel

机构信息

Grupo NANOCOSMO and PRINATEC, CIMAV, S.C., Miguel de Cervantes 120, Complejo Industrial Chihuahua, Chihuahua, Chih. 31109, Mexico.

出版信息

J Mol Model. 2007 Apr;13(4):505-18. doi: 10.1007/s00894-007-0170-2. Epub 2007 Jan 27.

Abstract

Three of the most frequent antitubercular agents employed against Mycobacterium tuberculosis are: Rifampicin, Isoniazid and Pyrazinamide. It has been proven that the use of these antitubercular agents together, shortens the treatment period from 12-18 months to 6 months [1]. In this work we use a new Density Functional Theory chemistry model called CHIH-DFT (Chihuahua-Heterocycles-Density Functional Theory) that reflects the mixture of Hartree Fock exchange and DFT exchange, according to a mixing parameter based on empirical rules suited for heterocyclic systems. This new chemistry model was used to calculate the molecular structure of these antitubercular compounds, as well as their infrared, UV spectra, chemical reactivity and electronic properties. The UV and infrared spectra were obtained by experimental techniques. The calculated molecular structure, UV and IR spectra values from CHIH-DFT were compared with experimentally obtained values and theoretical studies. These results are in good agreement with experimental and theoretical studies. We also predicted using the relative electrophilicity and relative nucleophilicity concepts as defined by Roy et al. [2] the chemical active sites for the three antitubercular compounds as well as their electronegativity, ionization potential, electron affinity, hardness, dipole moment, E(HOMO)-E(LUMO) gap energy, etc.

摘要

用于对抗结核分枝杆菌的三种最常用抗结核药物是

利福平、异烟肼和吡嗪酰胺。已证明,联合使用这些抗结核药物可将治疗期从12 - 18个月缩短至6个月[1]。在这项工作中,我们使用了一种新的密度泛函理论化学模型,称为CHIH - DFT(奇瓦瓦 - 杂环 - 密度泛函理论),该模型根据适用于杂环系统的经验规则的混合参数,反映了哈特里 - 福克交换和DFT交换的混合。这个新的化学模型用于计算这些抗结核化合物的分子结构,以及它们的红外光谱、紫外光谱、化学反应性和电子性质。紫外和红外光谱通过实验技术获得。将CHIH - DFT计算得到的分子结构、紫外和红外光谱值与实验获得的值以及理论研究进行了比较。这些结果与实验和理论研究结果吻合良好。我们还使用Roy等人[2]定义的相对亲电性和相对亲核性概念预测了这三种抗结核化合物的化学活性位点,以及它们的电负性、电离势、电子亲和能、硬度、偶极矩、E(HOMO) - E(LUMO) 能隙等。

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