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大鼠肝脏微粒体对喷他脒的羟基化作用。

Hydroxylation of pentamidine by rat liver microsomes.

作者信息

Berger B J, Reddy V V, Le S T, Lombardy R J, Hall J E, Tidwell R R

机构信息

Department of Parasitology and Laboratory Practice, School of Public Health, University of North Carolina, Chapel Hill.

出版信息

J Pharmacol Exp Ther. 1991 Mar;256(3):883-9.

PMID:2005586
Abstract

The antiprotozoal/antifungal drug pentamidine [1,5-bis(4-amidinophenoxy)pentane] has been recently shown to be metabolized by rat liver fractions to at least six putative metabolites as detected by high-performance liquid chromatography. Two minor metabolites have been previously identified as N-hydroxypentamidine and N,N'-dihydroxypentamidine. In this study, the two major microsomal metabolites have been identified as the 2-pentanol and 3-pentanol analogs of pentamidine [1,5-di(4-amidinophenoxy)-2-pentanol; and 1,5-bis(4-amidinophenoxy)-3-pentanol]. As well, a seventh putative metabolite has been discovered and identified as para-hydroxybenzamidine, a fragment of the original drug. Whereas the cytochromes P-450 have been demonstrated as the enzyme system responsible for pentamidine metabolism, hydroxylation of the drug was not inducible by phenobarbital, beta-naphthoflavone, clofibrate, isosafrole, pregnenolone-16 alpha-carbonitrile, ethanol or pentamidine pretreatment of rats. The kinetics of the production of the two major microsomal metabolites has been determined as Km = 56 +/- 19 microM and Vmax = 126 +/- 21 pmol/min/mg microsomal protein for the 2-pentanol analog, and Km = 28 +/- 0.28 microM and Vmax = 195 +/- 2.4 pmol/min/mg microsomal protein for the 3-pentanol analog. Therefore, the mixed-function oxidases readily convert pentamidine to hydroxylated metabolites, but exactly which isozyme(s) of cytochrome P-450 is responsible is not clear.

摘要

抗寄生虫/抗真菌药物喷他脒[1,5 - 双(4 - 脒基苯氧基)戊烷]最近被发现可被大鼠肝脏组分代谢为至少六种推定代谢物,这是通过高效液相色谱法检测到的。此前已鉴定出两种次要代谢物为N - 羟基喷他脒和N,N'-二羟基喷他脒。在本研究中,两种主要的微粒体代谢物已被鉴定为喷他脒的2 - 戊醇和3 - 戊醇类似物[1,5 - 二(4 - 脒基苯氧基)-2 - 戊醇;以及1,5 - 双(4 - 脒基苯氧基)-3 - 戊醇]。此外,还发现并鉴定出第七种推定代谢物为对羟基苯甲脒,它是原始药物的一个片段。虽然细胞色素P - 450已被证明是负责喷他脒代谢的酶系统,但该药物的羟基化不受苯巴比妥、β - 萘黄酮、氯贝丁酯、异黄樟素、孕烯醇酮 - 16α - 腈、乙醇或大鼠喷他脒预处理的诱导。已确定两种主要微粒体代谢物生成的动力学参数为:2 - 戊醇类似物的Km = 56 ± 19 μM,Vmax = 126 ± 2l pmol/min/mg微粒体蛋白;3 - 戊醇类似物的Km = 28 ± 0.28 μM,Vmax = 195 ± 2.4 pmol/min/mg微粒体蛋白。因此,混合功能氧化酶很容易将喷他脒转化为羟基化代谢物,但具体是哪种细胞色素P - 450同工酶负责并不清楚。

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