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美法仑与水、磷酸盐和谷胱甘肽反应的动力学分析。

Kinetic analysis of the reaction of melphalan with water, phosphate, and glutathione.

作者信息

Bolton M G, Hilton J, Robertson K D, Streeper R T, Colvin O M, Noe D A

机构信息

Department of Oncology, Johns Hopkins University School of Medicine, Baltimore, MD.

出版信息

Drug Metab Dispos. 1993 Nov-Dec;21(6):986-96.

PMID:7905404
Abstract

The reaction kinetics of the hydrolysis, phosphatolysis, glutathionyl conjugation, and alpha-glutathione-S-transferase (GST)-catalyzed glutathione conjugation of [3H-ring]melphalan were investigated at pH 6.5 and 7.4. The distribution of products relative to the initial parent compound radioactivity over time was measured by HPLC and analyzed by nonlinear regression techniques using a system of rate and distribution equations that describe the complete precursor-product pathways applicable to each reaction condition. The kinetic parameters calculated in the analysis were the first- and second-order rate constants of formation and the product ratios of the aziridinium intermediates. The second-order rate constants were normalized to those obtained for the hydroxylation reactions to yield relative rate constants. The first-order rate constants of aziridinium ion formation from melphalan and from all the monosubstituted melphalan species, except chloro, hydroxyl melphalan, were similar under all reaction conditions. The relative second-order rate constant for nonenzymatic glutathionylation of the aziridinium intermediate was 7 times larger at pH 7.4 than at pH 6.5. GST was found to react only with the aziridinium intermediate formed from melphalan and to dissociate slowly from the resultant GST-product complex (dissociation half-life, 1 hr at pH 7.4 and 3.5 hr at pH 6.5). The kinetic parameter estimates found in this study can be used to make preliminary calculations of the impact that cellular phosphate, glutathione, and GST concentrations will have on the intracellular detoxication of melphalan.

摘要

在pH 6.5和7.4条件下,研究了[³H-环]美法仑的水解、磷酸解、谷胱甘肽缀合以及α-谷胱甘肽-S-转移酶(GST)催化的谷胱甘肽缀合反应动力学。通过高效液相色谱法(HPLC)测量产物相对于初始母体化合物放射性随时间的分布,并使用速率和分布方程组通过非线性回归技术进行分析,该方程组描述了适用于每种反应条件的完整前体-产物途径。分析中计算的动力学参数是形成的一级和二级速率常数以及氮丙啶中间体的产物比率。将二级速率常数归一化为羟基化反应获得的速率常数,以产生相对速率常数。在所有反应条件下,美法仑以及除氯代、羟基美法仑之外的所有单取代美法仑物种形成氮丙啶离子的一级速率常数相似。氮丙啶中间体非酶促谷胱甘肽化的相对二级速率常数在pH 7.4时比在pH 6.5时大7倍。发现GST仅与美法仑形成的氮丙啶中间体反应,并从所得的GST-产物复合物中缓慢解离(解离半衰期,在pH 7.4时为1小时,在pH 6.5时为3.5小时)。本研究中发现的动力学参数估计值可用于初步计算细胞内磷酸盐、谷胱甘肽和GST浓度对美法仑细胞内解毒的影响。

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