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二乙基二硫代氨基甲酸盐(DDTC)对费希尔344大鼠血浆中四氯(d,l-反式)-1,2-二氨基环己烷铂(IV)(四铂)生物转化的影响。

Effects of diethyldithiocarbamate (DDTC) on the plasma biotransformations of tetrachloro(d,l-trans)-1,2-diaminocyclohexaneplatinum(IV) (tetraplatin) in Fischer 344 rats.

作者信息

Carfagna P F, Wyrick S D, Holbrook D J, Chaney S G

机构信息

Department of Biochemistry and Biophysics, School of Medicine, University of North Carolina, Chapel Hill 27599.

出版信息

J Biochem Toxicol. 1991 Spring;6(1):71-80. doi: 10.1002/jbt.2570060110.

Abstract

We have studied the effects of diethyldithiocarbamate (DDTC) on the biotransformations of toxic doses of tetrachloro (d,l-trans)1,2-diaminocyclohexaneplatinum(IV) (tetraplatin) in Fischer 344 rats. In animals not treated with DDTC, tetraplatin was rapidly converted to dichloro(d,l-trans)1,2-diaminocyclohexaneplatinum(II) [PtCl2(dach)]. Subsequent biotransformations included the transient formation of the (d,l-trans)1,2-diaminocyclohexane-aquachloroplatinum(II) [Pt(H2O)(Cl)(dach)]+ complex, followed by formation of the platinum (Pt)-methionine and either Pt-cysteine or Pt-ornithine complexes. Significant amounts of free (d,l-trans) 1,2-diaminocyclohexane (dach) were observed in plasma as a result of intracellular trans-labilization reactions. DDTC caused a marked decrease in both total and protein-bound platinum in the circulation. A significant increase in the plasma concentration of free dach was also observed as a result of formation of the Pt(DDTC)2 complex. Some of the free dach could have arisen from intracellular reactions with DDTC, but the displacement of platinum from plasma proteins was more than sufficient to account for the increase in free dach in the circulation. DDTC treatment also decreased plasma concentrations of tetraplatin, PtCl2(dach), [Pt(H2O)(Cl) (dach)]+, the Pt-methionine complex, and one unidentified biotransformation product, but had no effect on the Pt-cysteine (or Pt-ornithine) complex. These effects of DDTC on protein-bound platinum and low-molecular-weight biotransformation products in plasma may contribute to the decrease in tetraplatin toxicity seen in DDTC-treated rats.

摘要

我们研究了二乙基二硫代氨基甲酸盐(DDTC)对Fischer 344大鼠中毒剂量的四氯(d,l-反式)1,2-二氨基环己烷铂(IV)(四铂)生物转化的影响。在未用DDTC处理的动物中,四铂迅速转化为二氯(d,l-反式)1,2-二氨基环己烷铂(II)[PtCl2(dach)]。随后的生物转化包括(d,l-反式)1,2-二氨基环己烷-水氯铂(II)[Pt(H2O)(Cl)(dach)]+络合物的短暂形成,随后形成铂(Pt)-蛋氨酸以及Pt-半胱氨酸或Pt-鸟氨酸络合物。由于细胞内转位反应,在血浆中观察到大量游离的(d,l-反式)1,2-二氨基环己烷(dach)。DDTC导致循环中总铂和蛋白结合铂显著降低。由于形成了Pt(DDTC)2络合物,还观察到游离dach的血浆浓度显著增加。一些游离dach可能来自细胞内与DDTC的反应,但血浆蛋白中铂的置换足以解释循环中游离dach的增加。DDTC处理还降低了血浆中四铂、PtCl2(dach)、[Pt(H2O)(Cl)(dach)]+、Pt-蛋氨酸络合物和一种未鉴定的生物转化产物的浓度,但对Pt-半胱氨酸(或Pt-鸟氨酸)络合物没有影响。DDTC对血浆中蛋白结合铂和低分子量生物转化产物的这些影响可能有助于降低DDTC处理大鼠中四铂的毒性。

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