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乙苯和苯乙烯代谢生成扁桃酸:立体化学考量

The metabolism of ethylbenzene and styrene to mandelic acid: stereochemical considerations.

作者信息

Drummond L, Caldwell J, Wilson H K

机构信息

Occupational Medicine and Hygiene Laboratories, London, UK.

出版信息

Xenobiotica. 1989 Feb;19(2):199-207. doi: 10.3109/00498258909034692.

Abstract
  1. The stereochemistry of mandelic acid, produced as a major urinary metabolite of ethylbenzene and styrene in rat and man has been investigated. Although these solvents are both achiral they are metabolized to chiral metabolites, via a series of chiral intermediates. 2. Analytical methods (g.l.c.-mass spectrometry, h.p.l.c. and 19F-n.m.r.) have been developed for the determination of the enantiomeric composition of mandelic acid in urine. 3. These methods have been applied to the study of the metabolic stereochemistry of ethylbenzene and styrene in rats dosed orally (100 mg/kg body weight) and in human volunteers exposed to atmospheres containing these solvents at the upper limits prescribed for workplaces by the UK Health and Safety Executive (100 ppm in air). 4. Results show that whereas only the R-enantiomer of mandelic acid was excreted after ethylbenzene exposure, the mandelic acid formed from styrene was essentially racemic. In three workers occupationally exposed to styrene, ratios of R to S isomers of 1.16, 1.27 and 1.14 were found. A synthetic R/S mixture of mandelic acid had an R/S ratio of 1.03. 5. The implications of these findings for the biological monitoring of workers occupationally exposed to stryrene and/or ethylbenzene are discussed.
摘要
  1. 扁桃酸的立体化学已得到研究,它是大鼠和人体中乙苯及苯乙烯的主要尿液代谢产物。尽管这些溶剂均为非手性的,但它们会通过一系列手性中间体代谢为手性代谢产物。2. 已开发出分析方法(气相色谱 - 质谱联用、高效液相色谱和氟 - 核磁共振)用于测定尿液中扁桃酸的对映体组成。3. 这些方法已应用于对口服给药(100毫克/千克体重)的大鼠以及暴露于英国健康与安全执行局规定的工作场所上限浓度(空气中100 ppm)含这些溶剂的大气中的人类志愿者体内乙苯和苯乙烯代谢立体化学的研究。4. 结果表明,乙苯暴露后仅排出扁桃酸的R - 对映体,而由苯乙烯形成的扁桃酸基本是外消旋的。在三名职业性接触苯乙烯的工人中,发现R与S异构体的比例分别为1.16、1.27和1.14。扁桃酸的合成R/S混合物的R/S比例为1.03。5. 讨论了这些发现对职业性接触苯乙烯和/或乙苯工人的生物监测的意义。

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