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采用反相高效液相色谱法同时测定人血浆和尿液中的氯胍及其代谢物,并初步探讨其与基因决定的S-美芬妥因4'-羟化状态的关系。

Simultaneous measurement of proguanil and its metabolites in human plasma and urine by reversed-phase high-performance liquid chromatography, and its preliminary application in relation to genetically determined S-mephenytoin 4'-hydroxylation status.

作者信息

Kusaka M, Setiabudy R, Chiba K, Ishizaki T

机构信息

Department of Clinical Pharmacology, Research Institute, International Medical Center of Japan, Tokyo.

出版信息

Am J Trop Med Hyg. 1996 Feb;54(2):189-96. doi: 10.4269/ajtmh.1996.54.189.

Abstract

A simple high-performance liquid chromatographic (HPLC) assay method was developed for the measurement of proguanil (PG) and its major metabolites, cycloguanil (CG) and 4-chlorophenyl-biguanide (CPB), in human plasma and urine. The assay allowed the simultaneous determination of all analytes in 1 ml of plasma or 0.1 ml of urine. The detection limits of PG, CG, and CPB, defined as the signal-to-noise ratio of 3, were 1 and 5 ng/ml for plasma and urine samples, respectively. Recoveries of the analytes and the internal standard (pyrimethamine) were > 62% from plasma and > 77% from urine. Intra-assay and interassay coefficients of variation for all analytes in plasma and urine were < 10% except for the values of CG and CPB, which ranged from 10% to 15% at one or two concentrations among 4-5 concentrations studied. The clinical applicability of the method was assessed by the preliminary pharmacokinetic study of PG, CG, and CPB in six healthy volunteers with the individually known phenotypes (extensive and poor metabolizers) of S-mephenytoin 4'-hydroxylation, suggesting that individuals with a poor metabolizer phenotype of S-mephenytoin have a much lower capacity to bioactivate PG to CG compared with the extensive metabolizers.

摘要

建立了一种简单的高效液相色谱(HPLC)分析方法,用于测定人血浆和尿液中的氯胍(PG)及其主要代谢物环氯胍(CG)和4-氯苯基双胍(CPB)。该分析方法可同时测定1 ml血浆或0.1 ml尿液中的所有分析物。PG、CG和CPB的检测限(定义为信噪比为3时),血浆和尿液样品分别为1 ng/ml和5 ng/ml。分析物和内标(乙胺嘧啶)在血浆中的回收率>62%,在尿液中的回收率>77%。血浆和尿液中所有分析物的批内和批间变异系数<10%,但CG和CPB的值除外,在所研究的4至5个浓度中的一两个浓度下,其变异系数范围为10%至15%。通过对6名具有已知S-美芬妥因4'-羟基化表型(快代谢型和慢代谢型)的健康志愿者进行PG、CG和CPB的初步药代动力学研究,评估了该方法的临床适用性,结果表明,与快代谢型个体相比,S-美芬妥因慢代谢型个体将PG生物激活为CG的能力要低得多。

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