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氯离子浓度对[Pt(SMC)Cl₂]与生物相关亲核试剂的配体取代反应的影响。

Influence of the chloride concentration on ligand substitution reactions of [Pt(SMC)Cl(2)] with biologically relevant nucleophiles.

作者信息

Soldatović Tanja, Bugarcić Zivadin D, van Eldik Rudi

机构信息

Inorganic Chemistry, Department of Chemistry and Pharmacy, University of Erlangen-Nürnberg, Egerlandstrasse 1, 91058 Erlangen, Germany.

出版信息

Dalton Trans. 2009 Jun 21(23):4526-31. doi: 10.1039/b822718g. Epub 2009 Apr 22.

Abstract

The kinetics and mechanism of ligand substitution reactions of [Pt(SMC)Cl(2)] (SMC = S-methyl-l-cysteine) with biologically relevant ligands were studied as a function of chloride and nucleophile concentrations at pH 2.5 and 7.2. It was observed that the slope and intercept obtained from the linear dependence of the observed rate constant on the nucleophile concentration strongly depend on the [Cl(-)] for all the studied substitution reactions. At high [Cl(-)], the rate constant for the forward reaction is almost zero and that for the back reaction follows the order: l-met > GSH approximately INO > 5'-GMP. Ion-pair formation between the positively charged Pt(ii) complex and the chloride ion is suggested to account for the saturation kinetics observed for the back reaction. The results are discussed in terms of the mechanism of the anti-tumour activity of related platinum complexes.

摘要

研究了[Pt(SMC)Cl₂](SMC = S-甲基-L-半胱氨酸)与生物相关配体的配体取代反应的动力学和机理,该反应是在pH值为2.5和7.2时氯化物和亲核试剂浓度的函数。观察到,对于所有研究的取代反应,从观察到的速率常数对亲核试剂浓度的线性依赖性获得的斜率和截距强烈依赖于[Cl⁻]。在高[Cl⁻]时,正向反应的速率常数几乎为零,而逆向反应的速率常数遵循以下顺序:L-蛋氨酸>GSH≈INO>5'-GMP。带正电荷的Pt(ii)配合物与氯离子之间的离子对形成被认为是逆向反应中观察到的饱和动力学的原因。根据相关铂配合物的抗肿瘤活性机理对结果进行了讨论。

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