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Derivation of an occupational exposure limit (OEL) for n-propyl bromide using an improved methodology.

机译:使用改进的方法得出正丙基溴的职业接触限值(OEL)。

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摘要

n-Propyl bromide is an industrial solvent with increasing production volume due to its use as a replacement for fluorohydrocarbons. Therefore, the number of occupationally exposed workers is growing accordingly. This manuscript presents a thorough evaluation of available animal and human data to derive an occupational exposure limit (OEL) for n-propyl bromide. In addition, structure activity relationship within the homologous series of methyl, ethyl, and n-propyl bromide and an identical spectrum of effects caused by similar doses of 2-propyl bromide are used to increase the confidence of the analysis. The structure activity relationship was entirely consistent for acute and subchronic (neurologic, reproductive, and hematopoietic) toxicities and for mutagenic potency in that CH3Br was more toxic than CH3CH2Br, which in turn was more toxic than CH3CH2CH2Br in every case in all species studied, including humans. Animals appeared to be similarly susceptible as, or slightly more susceptible than, humans to n-propyl bromide's toxicity. An OEL (60-90 ppm) was derived from a limited human study and supported by an across-the-toxic-spectrum comparison of animal and human data for both n-propyl and 2-propyl bromide. A carcinogenic classification was not deemed necessary at the recommended OEL based on very low mutagenic potency and the consistent structure activity relationship across the homologous series of these alkyl bromides.
机译:正丙基溴是一种工业溶剂,由于其用作氟代烃的替代品,因此产量不断增加。因此,职业暴露工人的数量相应增加。该手稿对可获得的动物和人类数据进行了全面评估,以得出正丙基溴的职业接触限值(OEL)。另外,在甲基,乙基和正丙基溴的同源系列内的结构活性关系以及由相似剂量的2-丙基溴所引起的相同作用谱可用于增加分析的可信度。结构活性关系对于急性和亚慢性(神经,生殖和造血)毒性和诱变效力完全一致,因为CH3Br比CH3CH2Br毒性更大,而在所有情况下,在所有研究的物种中,CH3Br都比CH3CH2Br毒性更大,包括人类。动物似乎对人类的正丙基溴毒性相似,或比人类略微敏感。 OEL(60-90 ppm)来自一项有限的人类研究,并得到了正丙基溴和2-丙基溴的动物和人类数据的跨毒性谱比较的支持。在推荐的OEL中,基于极低的致突变力以及这些烷基溴同系物之间一致的结构活性关系,认为没有必要进行致癌分类。

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