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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Toxicokinetic interactions between orally ingested chlorzoxazone and inhaled acetone or toluene in male volunteers.
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Toxicokinetic interactions between orally ingested chlorzoxazone and inhaled acetone or toluene in male volunteers.

机译:在男性志愿者中口服摄入的氯唑沙宗与吸入的丙酮或甲苯之间的毒代动力学相互作用。

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摘要

The aim of this study was to examine if the drug chlorzoxazone has any influence on the toxicokinetics of acetone and toluene. Chlorzoxazone is mainly metabolized by the same enzyme (Cytochrome P450 2E1) as ethanol and many other organic solvents. Ten male volunteers were exposed to solvent vapor (2 h, 50 watt) in an exposure chamber. Each subject was exposed to acetone only (250 ppm), acetone + chlorzoxazone, toluene (50 ppm) only, toluene + chlorzoxazone, and chlorzoxazone only. Chlorzoxazone (500 mg) was taken as two tablets 1 h prior to solvent exposure. Samples of blood, urine and exhaled air were collected before, during and until 20 h post exposure. The samples were analyzed by head-space gas chromatography (acetone and toluene) and high-performance liquid chromatography (chlorzoxazone, 6-hydroxychlorzoxazone and hippuric acid). The time-concentration curves of acetone and toluene in blood were fitted to one- and four-compartment toxicokinetic models, respectively. Intake of chlorzoxazone was associated with slight but significant increases in the area under the blood concentration-time curve (AUC) and steady state concentration of acetone in blood, along with non significant tendencies to an increased half time in blood and an increased AUC in urine. Except for a delayed excretion of hippuric acid in urine, no effects on the toluene toxicokinetics were seen after chlorzoxazone treatment. Small increases in chlorzoxazone plasma levels were seen after exposure compared to chlorzoxazone alone. These interactions, although statistically significant, seem to be small compared to the interindividual variability on metabolism and toxicokinetics.
机译:这项研究的目的是检查药物氯唑沙宗是否对丙酮和甲苯的毒代动力学有任何影响。氯唑沙宗主要由与乙醇和许多其他有机溶剂相同的酶(细胞色素P450 2E1)代谢。十名男性志愿者在暴露室内暴露于溶剂蒸汽(2小时,50瓦)。每个受试者仅暴露于丙酮(250 ppm),丙酮+氯唑沙宗,仅甲苯(50 ppm),甲苯+氯唑沙宗和氯唑沙宗。在暴露于溶剂前1小时,服用氯唑沙宗(500 mg)为两片。在暴露前,暴露中和暴露后20 h收集血液,尿液和呼出空气的样本。通过顶空气相色谱法(丙酮和甲苯)和高效液相色谱法(氯唑沙宗,6-羟基氯唑酮和马尿酸)分析样品。将血液中丙酮和甲苯的时间浓度曲线分别拟合为一室和四室毒物动力学模型。氯唑沙宗的摄入与血液中浓度-时间曲线(AUC)和血液中丙酮的稳态浓度下的面积略有但显着增加相关,同时血液中半衰期增加和尿中AUC升高的趋势不明显。除尿液中马尿酸延迟排泄外,氯唑沙宗处理后未观察到对甲苯的毒代动力学的影响。与单独的氯唑沙宗相比,暴露后的氯唑沙宗血浆水平有少量增加。这些相互作用尽管具有统计学意义,但与个体间在代谢和毒代动力学方面的差异相比似乎很小。

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