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模拟苯乙烯的急性神经毒性。

Modeling the acute neurotoxicity of styrene.

作者信息

Pierce C H, Becker C E, Tozer T N, Owen D J, So Y

机构信息

Department of Environmental Health, University of Washington, Seattle 98195-7234, USA.

出版信息

J Occup Environ Med. 1998 Mar;40(3):230-40. doi: 10.1097/00043764-199803000-00005.

Abstract

Styrene is a widely used industrial solvent associated with acute neurotoxicity. To investigate the relationships between exposure, blood concentrations, and the appearance of neurotoxic effects, four healthy males were exposed to styrene concentrations of 5-200 ppm in four different exposure-time profiles. A digit recognition test and P300 event-related evoked potential were used to measure neurologic function. A physiologically based kinetic (PBK) model generated close predictions of measured styrene blood concentrations, in the range of 0.01-12 mg/L, from this and 21 previous studies. Simulated peak brain concentration, durationXaverage exposure, and peak exposure level were predictive of toxicity. Central nervous system effects were expected at a blood concentration near 2.4 mg/L. A standard of 20 ppm was expected to protect styrene-exposed workers from acute central nervous system toxicity under light work conditions.

摘要

苯乙烯是一种广泛使用的工业溶剂,与急性神经毒性有关。为了研究接触、血液浓度与神经毒性效应出现之间的关系,四名健康男性在四种不同的接触时间模式下接触浓度为5 - 200 ppm的苯乙烯。采用数字识别测试和P300事件相关诱发电位来测量神经功能。一个基于生理学的动力学(PBK)模型根据本次研究以及之前的21项研究,对0.01 - 12 mg/L范围内测得的苯乙烯血液浓度做出了相近的预测。模拟的大脑峰值浓度、持续时间×平均接触量和峰值接触水平可预测毒性。预计血液浓度接近2.4 mg/L时会出现中枢神经系统效应。预计20 ppm的标准可保护接触苯乙烯的工人在轻工作条件下免受急性中枢神经系统毒性的影响。

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