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焊接烟尘中锰的职业接触水平的推导。

Derivation of an occupational exposure level for manganese in welding fumes.

机构信息

Gradient, 20 University Road, Cambridge, MA 02138 USA.

Gradient, 20 University Road, Cambridge, MA 02138 USA.

出版信息

Neurotoxicology. 2018 Jan;64:166-176. doi: 10.1016/j.neuro.2017.06.009. Epub 2017 Jun 15.

Abstract

Exposure to high levels of manganese (Mn) in occupational settings is known to lead to adverse neurological effects. Since Mn is an essential nutrient, there are mechanisms that maintain its homeostatic control in the body, and there is some level of Mn in air that does not perturb Mn homeostasis. However, the Mn exposure concentrations at which no adverse effects are expected in occupational settings vary considerably across regulatory agencies. We set out to derive a Mn Occupational Exposure Level (OEL) for welders based on a review of studies that evaluated Mn exposure concentrations from welding fumes and: (1) neurological effects in welders; (2) levels of Mn in the brains of welders (via pallidal index [PI] estimated from magnetic resonance imaging [MRI]); (3) other biomarkers of Mn exposure in welders (i.e., blood and urine); and (4) Mn brain concentrations, PI, and corresponding neurological effects in non-human primates. Our analysis suggests uncertainty in quantifying dose-response associations for Mn from many of the occupational welding studies. The few welding studies that adequately estimate exposure suggest a possible OEL of 100-140μg/m for respirable Mn. This range is consistent with other epidemiology studies, studies of biomarkers of Mn exposure in welders, and with studies in non-human primates, though future studies could provide a stronger basis for deriving a Mn occupational guideline for welders.

摘要

在职业环境中接触高水平的锰(Mn)已知会导致不良的神经影响。由于 Mn 是一种必需的营养物质,因此体内存在维持其体内平衡控制的机制,并且空气中存在一定水平的 Mn 不会破坏 Mn 体内平衡。然而,在职业环境中预计不会产生不利影响的 Mn 暴露浓度因监管机构而异。我们旨在根据评估来自焊接烟尘的 Mn 暴露浓度的研究,为焊工制定 Mn 职业暴露水平(OEL):(1)焊工的神经影响;(2)焊工大脑中的 Mn 水平(通过磁共振成像 [MRI] 估计的苍白球指数 [PI]);(3)焊工其他 Mn 暴露生物标志物(即血液和尿液);以及(4)非人类灵长类动物中的 Mn 脑浓度、PI 和相应的神经影响。我们的分析表明,许多职业焊接研究在量化 Mn 的剂量-反应关系方面存在不确定性。少数充分估计暴露的焊接研究表明,呼吸性 Mn 的可能 OEL 为 100-140μg/m。该范围与其他流行病学研究、焊工 Mn 暴露生物标志物的研究以及非人类灵长类动物的研究一致,尽管未来的研究可以为为焊工制定 Mn 职业指南提供更有力的依据。

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