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脱水四环素与铝(III)相互作用的理论研究

A theoretical study of the interaction of anhydrotetracycline with Al(III).

作者信息

De Almeida W B, Dos Santos H F, Zerner M C

机构信息

Laboratório de Química Computacional e Modelagem Molecular, Departamento de Química, ICEx, UFMG, Belo Horizonte, MG, 31270-901, Brazil.

出版信息

J Pharm Sci. 1998 Sep;87(9):1101-8. doi: 10.1021/js980035l.

Abstract

In this article the complexation of anhydrotetracycline (AHTC), the major toxic decomposition product of the antibiotic tetracycline, with Al(III) has been investigated using the AM1 semiempirical and ab initio Hartree-Fock levels of theory. Different modes of complexation have been considered with the structure of tetra- and pentacoordinated complexes being fully optimized. In the gas phase, processes ii and iii, which lead to the complexes with stoichiometry MHL2+, are favored. Structure II ([AlLH2(OH)(H2O)]2+) has the metal coordinated to the O11 and O12 groups and the O3 group protonated and is the global minimum on the potential energy surface for the interaction. In water solution, the Al(III) is predicted to form predominantly a tetracoordinated complex at the Oam and O3 site (V) of the AHTC with the stoichiometry MH2L3+ (process i). The experimental proposal is the complexed form with the metal ion coordinated to the O11-O12 moiety (site II). The intramolecular proton transfer, which leads to the most stable Al(III)-AHTC MHL2+ complex, has not been considered by the experimentalists. The experimental structure was found to be unfavorable in our calculations in both gas phase and water solution. All the semiempirical results are in perfect agreement with the ab initio calculations. So, we suggest that the experimental assignments should be revised, taking into account the results obtained in the present study.

摘要

在本文中,使用AM1半经验方法和从头算Hartree-Fock理论水平,研究了抗生素四环素的主要有毒分解产物脱水四环素(AHTC)与Al(III)的络合作用。考虑了不同的络合模式,并对四配位和五配位络合物的结构进行了完全优化。在气相中,导致形成化学计量比为MHL2+的络合物的过程ii和iii更受青睐。结构II([AlLH2(OH)(H2O)]2+)中金属与O11和O12基团配位,O3基团质子化,是相互作用势能面上的全局最小值。在水溶液中,预计Al(III)主要在AHTC的Oam和O3位点(V)形成化学计量比为MH2L3+的四配位络合物(过程i)。实验提出的是金属离子与O11 - O12部分(位点II)配位的络合形式。导致最稳定的Al(III)-AHTC MHL2+络合物的分子内质子转移,实验人员并未考虑。在我们的计算中发现,实验结构在气相和水溶液中均不利。所有半经验结果与从头算计算结果完全一致。因此,我们建议应根据本研究获得的结果对实验归属进行修订。

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