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Occupational toxicology of nickel and nickel compounds.

机译:镍和镍化合物的职业毒理学。

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摘要

Nickel and nickel compounds are widely used in industry. The high consumption of nickel products inevitably leads to occupational and environmental pollution. In occupational settings, exposure to nickel and nickel compounds occurs primarily during nickel refining, electroplating, and welding. The most common airborne exposures to nickel in the workplace are to insoluble nickel species, such as metallic nickel, nickel sulfide, and nickel oxides from dusts and fumes. The chemical and physical properties of nickel and nickel compounds strongly influence their bioavailability and toxicity. The lung and the skin are the principal target organs upon occupational exposure. inhalation exposure is a primary route for nickel-induced toxicity in the workplace. The most important adverse health effects due to occupational exposure to nickel and its compounds are skin allergies, lung fibrosis, and lung cancer. The exact mechanisms of nickel-induced carcinogenesis are not clear. This review summarizes the current knowledge on occupational toxicology of nickel and its compounds. The subtopics include: chemical and physical properties, uses, occupational exposures, occupational exposure limits, toxicokinetics, biological monitoring, acute toxicity, chronic toxicity, genotoxicity, reproductive toxicity, carcinogenicity, molecular mechanisms of carcinogenesis, and gaps in knowledge.
机译:镍和镍化合物广泛用于工业中。镍产品的高消耗不可避免地导致职业和环境污染。在职业环境中,镍和镍化合物的暴露主要发生在镍精炼,电镀和焊接过程中。在工作场所中,最常见的空气中镍暴露于不溶性镍物质,例如金属镍,硫化镍和粉尘和烟雾中的氧化镍。镍和镍化合物的化学和物理性质强烈影响其生物利用度和毒性。职业暴露后,肺和皮肤是主要的靶器官。吸入暴露是工作场所镍引起的毒性的主要途径。由于职业性暴露于镍及其化合物而引起的最重要的不利健康影响是皮肤过敏,肺纤维化和肺癌。镍诱导癌变的确切机制尚不清楚。这篇综述总结了有关镍及其化合物的职业毒理学的最新知识。子主题包括:化学和物理特性,用途,职业暴露,职业暴露极限,毒物动力学,生物监测,急性毒性,慢性毒性,遗传毒性,生殖毒性,致癌性,致癌分子机制和知识差距。

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