首页> 美国卫生研究院文献>British Journal of Industrial Medicine >Monitoring of exposure to methylpentanes by diffusive sampling and urine analysis for alcoholic metabolites.
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Monitoring of exposure to methylpentanes by diffusive sampling and urine analysis for alcoholic metabolites.

机译:通过扩散采样和尿液分析酒精性代谢物监测甲基戊烷的暴露。

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摘要

OBJECTIVES--To investigate the possibilities of personal ambient monitoring and biological monitoring for methylpentane isomers. METHODS--The performance of activated carbon cloth to absorb 2- and 3-methylpentane was studied by experimental vapour exposure followed by solvent extraction and gas chromatography (GC). Urine from workers and rats exposed to 2- and 3-methylpentane was analysed by GC with or without acid or enzymatic hydrolysis. RESULTS--Carbon cloth absorbed 2- and 3-methylpentane linearly to exposures up to eight hours and to 400 ppm, and was sensitive enough to detect a 15 minute peak of exposure. The two isomers were clearly separated from hexane on a DB-1 column. For analysis of the urine, enzymatic hydrolysis was superior to acid hydrolysis. Exposure of rats to methylpentane vapours showed that 2-methyl-2-pentanol and 3-methyl-2-pentanol were excreted in urine in proportion to the dose of 2-methylpentane and 3-methylpentane, respectively. 2-Methyl derivatives of 1-, 3-, and 4-propanol, 2-methylpentane-2,4-diol, and 3-methyl-2-pentanol were minor metabolites. Analysis of urine from the exposed workers showed that 2-methyl- and 3-methyl-2-pentanol are leading urinary metabolites after exposure to the corresponding methylpentane. CONCLUSIONS--Diffusive sampling is applicable to monitor 2- and 3-methylpentane vapours as is the case for hexane vapour. 2-Methyl-2-pentanol and 3-methyl-2-pentanol will be markers of occupational exposure to 2-methylpentane and 3-methylpentane, respectively. Also, 2-methylpentane-2,4-diol might be a marker of exposure to 2-methylpentane.
机译:目的-研究个人环境监测和甲基戊烷异构体生物监测的可能性。方法-通过实验性蒸气暴露,溶剂萃取和气相色谱(GC)研究了活性炭布吸收2-和3-甲基戊烷的性能。在有或没有酸或酶水解条件下,通过GC分析了暴露于2-和3-甲基戊烷的工人和大鼠的尿液。结果-碳布对2-甲基和3-甲基戊烷的吸收线性长达8小时,最高400 ppm,并且足够灵敏以检测15分钟的峰值暴露。在DB-1色谱柱上将两种异构体从己烷中明显分离出来。对于尿液分析,酶水解优于酸水解。大鼠暴露于甲基戊烷蒸气中后,尿中2-甲基-2-戊醇和3-甲基-2-戊醇的排出量分别与2-甲基戊烷和3-甲基戊烷的剂量成比例。 1-,3-和4-丙醇的2-甲基衍生物,2-甲基戊烷-2,4-二醇和3-甲基-2-戊醇是次要代谢物。分析来自暴露工人的尿液,发现2-甲基-和3-甲基-2-戊醇在暴露于相应的甲基戊烷后是主要的尿代谢产物。结论-扩散采样适用于监测2-和3-甲基戊烷蒸气,正己烷蒸气也是如此。 2-甲基-2-戊醇和3-甲基-2-戊醇分别是职业暴露于2-甲基戊烷和3-甲基戊烷的标志。同样,2-甲基戊烷-2,4-二醇可能是暴露于2-甲基戊烷的标志。

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