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顺铂与金属硫蛋白反应的动力学研究

Kinetic study on the reaction of cisplatin with metallothionein.

作者信息

Hagrman Douglas, Goodisman Jerry, Dabrowiak James C, Souid Abdul-Kader

机构信息

State University of New York, Upstate Medical University, Department of Pediatrics, 750 East Adams Street, Syracuse, NY 13210, USA.

出版信息

Drug Metab Dispos. 2003 Jul;31(7):916-23. doi: 10.1124/dmd.31.7.916.

Abstract

The binding of cisplatin to metallothionein (MT) was investigated at 37 degrees C in 10 mM Tris-NO3 (pH approximately 7.4) and 4.62 mM NaCl. The conditions were chosen to mimic passage of clinical concentrations of cisplatin through the cytosol. The reactions were monitored by high-performance liquid chromatography (HPLC), atomic absorption spectroscopy, and ultraviolet (UV) absorption spectroscopy. The UV data showed that several reactions occur, the first of which does not affect the absorbance (no Pt-sulfur bond formation). They also suggested that if [cisplatin] is large compared with [MT], the rate of subsequent reaction is between first and second order in [cisplatin] and between zeroth and first order in [MT]. HPLC eluates with 24 < retention time (tR) < 27 min contained undialyzable Pt, which increased with reaction time and corresponded to Pt-thionein product. Eluates with 3 < tR < 7 min corresponded to unbound cisplatin and allowed determination of second-order rate constants (k), using the second-order rate equation. The k value for cisplatin reacting with apo-MT was approximately 0.14 M-1 s-1, Cd/Zn-MT approximately 0.75 M-1 s-1, Cd7-MT approximately 0.53 M-1 s-1, and Zn7-MT approximately 0.65 M-1 s-1. Thus, cisplatin displaced Cd and Zn equally well. Leukocyte MT concentration was approximately 1.0 mM, so that the kinetics of cisplatin binding to cellular MT is pseudo-first order (pseudo-first-order rate constant, approximately 0.63 x 10-3 s-1; half-life, approximately 18 min). With [cisplatin] = 10 microM, the rate of cisplatin reaction with MT is approximately 6.3 micromol s-1 cm-3. We conclude that cellular MT can trap significant amounts of cisplatin and may efficiently contribute to cisplatin resistance.

摘要

在37摄氏度下,于10 mM硝酸三羟甲基氨基甲烷(pH约为7.4)和4.62 mM氯化钠溶液中研究了顺铂与金属硫蛋白(MT)的结合情况。选择这些条件是为了模拟临床浓度的顺铂在细胞溶质中的传递过程。通过高效液相色谱(HPLC)、原子吸收光谱法和紫外(UV)吸收光谱法对反应进行监测。紫外数据表明发生了几个反应,其中第一个反应不影响吸光度(未形成铂 - 硫键)。数据还表明,如果[顺铂]相对于[MT]较大,后续反应速率在[顺铂]方面介于一级和二级之间,在[MT]方面介于零级和一级之间。保留时间(tR)在24 < tR < 27分钟之间的HPLC洗脱液中含有不可透析的铂,其随反应时间增加,对应于铂 - 硫蛋白产物。tR在3 < tR < 7分钟之间的洗脱液对应于未结合的顺铂,并可使用二级速率方程测定二级速率常数(k)。顺铂与脱辅基MT反应的k值约为0.14 M-1 s-1,镉/锌 - MT约为0.75 M-1 s-1,镉7 - MT约为0.53 M-1 s-1,锌7 - MT约为0.65 M-1 s-1。因此,顺铂置换镉和锌的效果相当。白细胞MT浓度约为1.0 mM,所以顺铂与细胞MT结合的动力学是准一级的(准一级速率常数约为0.63×10-3 s-1;半衰期约为18分钟)。当[顺铂] = 10 microM时,顺铂与MT的反应速率约为6.3微摩尔 s-1 cm-3。我们得出结论,细胞MT可以捕获大量顺铂,并可能有效地导致顺铂耐药。

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