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工作环境中相关浓度的三氯乙烯的耳毒性。

Ototoxicity of trichloroethylene in concentrations relevant for the working environment.

作者信息

Vyskocil A, Leroux T, Truchon G, Lemay F, Gagnon F, Gendron M, Viau C

机构信息

Département de santé environnementale et santé au travail, Université de Montréal, Montreal, Quebec, Canada.

出版信息

Hum Exp Toxicol. 2008 Mar;27(3):195-200. doi: 10.1177/0960327108090267.

Abstract

Organic solvents can cause hearing loss themselves or promote noise-induced hearing loss. The objective of this study was to review the literature on the effects of low-level exposure to trichloroethylene on the auditory system and consider its relevance for the occupational settings. Both human and animal investigations were evaluated only for realistic exposure concentrations based on the Quebec permissible exposure limits: 50 ppm 8-h time-weighed average exposure value (TWAEV) and 200 ppm short-term exposure value (STEV). In humans, the upper limit for considering ototoxicity data relevant to the occupational exposure situation was set at the STEV. Animal data were evaluated only for exposure concentrations up to 100 times the TWAEV. There is no convincing evidence of trichloroethylene-induced hearing losses in workers. In rats, trichloroethylene affects the auditory function mainly in the cochlear mid- to high-frequency range with a lowest observed adverse effect level (LOAEL) of 2000 ppm. No studies on ototoxic interaction after combined exposure to noise and trichloroethylene were identified in humans. In rats, supra-additive interaction was reported. Further studies with sufficient data on the trichloroethylene exposure of workers are necessary to make a definitive conclusion. In the interim, we recommend considering trichloroethylene as an ototoxic agent.

摘要

有机溶剂本身可导致听力损失或加重噪声性听力损失。本研究的目的是回顾关于低水平三氯乙烯暴露对听觉系统影响的文献,并探讨其在职业环境中的相关性。基于魁北克省的职业接触限值:8小时时间加权平均接触值(TWAEV)为50 ppm,短期接触值(STEV)为200 ppm,仅对人类和动物研究中的实际接触浓度进行了评估。在人类中,将与职业接触情况相关的耳毒性数据的上限设定为STEV。仅对高达TWAEV 100倍的接触浓度的动物数据进行了评估。没有令人信服的证据表明工人因三氯乙烯而导致听力损失。在大鼠中,三氯乙烯主要影响耳蜗中高频范围的听觉功能,最低观察到有害作用水平(LOAEL)为2000 ppm。未在人类中发现关于噪声和三氯乙烯联合暴露后耳毒性相互作用的研究。在大鼠中,有超相加相互作用的报道。需要进一步对工人三氯乙烯暴露进行充分数据的研究才能得出明确结论。在此期间,我们建议将三氯乙烯视为耳毒性物质。

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