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首页> 外文期刊>Toxicology and Applied Pharmacology >The metabolism of inorganic arsenic oxides, gallium arsenide, and arsine: a toxicochemical review.
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The metabolism of inorganic arsenic oxides, gallium arsenide, and arsine: a toxicochemical review.

机译:无机砷氧化物,砷化镓和砷的代谢:毒理化学综述。

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The aim of this review is to compare the metabolism, chemistry, and biological effects to determine if either of the industrial arsenicals (arsine and gallium arsenide) act like the environmental arsenic oxides (arsenite and arsenate). The metabolism of the arsenic oxides has been extensively investigated in the past 4 years and the differences between the arsenic metabolites in the oxidation states +III versus +V and with one or two methyl groups added have shown increased importance. The arsenic oxide metabolism has been compared with arsine (oxidation state -III) and arsenide (oxidation state between 0 to -III). The different metabolites appear to have different strengths of reaction for binding arsenic (III) to thiol groups, their oxidation-reduction reactions and their forming an arsenic-carbon bond. It is unclear if the differences in parameters such as the presence or absence of methyl metabolites, the rates of AsV reduction compared to the rates of AsIII oxidation, or the competition of phosphate and arsenate for cellular uptake are large enough to change biological effects. The arsine rate of decomposition, products of metabolism, target organ of toxic action, and protein binding appeared to support an oxidized arsenic metabolite. This arsine metabolite was very different from anything made by the arsenic oxides. The gallium arsenide had a lower solubility than any other arsenic compound and it had a disproportionate intensity of lung damage to suggest that the GaAs had a site of contact interaction and that oxidation reactions were important in its toxicity. The urinary metabolites after GaAs exposure were the same as excreted by arsenic oxides but the chemical compounds responsible for the toxic effects of GaAs are different from the arsenic oxides. The review concludes that there is insufficient evidence to equate the different arsenic compounds. There are several differences in the toxicity of the arsenic compounds that will require substantial research.
机译:这篇综述的目的是比较新陈代谢,化学作用和生物学作用,以确定任何一种工业砷(砷化砷和砷化镓)是否像环境中的砷氧化物(砷酸盐和砷酸盐)一样起作用。在过去的四年中,已经广泛地研究了砷氧化物的代谢,并且氧化态+ III与+ V以及添加一个或两个甲基的砷代谢物之间的差异显示出越来越重要的意义。已将氧化砷的代谢与a(氧化态-III)和砷化物(氧化态介于0至-III之间)进行了比较。不同的代谢物似乎具有不同的将砷(III)与硫醇基结合的反应强度,其氧化还原反应以及形成砷碳键的能力。尚不清楚参数的差异(例如是否存在甲基代谢物,AsV还原速率与AsIII氧化速率相比)或磷酸盐和砷酸盐对细胞摄取的竞争是否足以改变生物学效应。砷化氢的分解速率,新陈代谢的产物,毒性作用的靶器官和蛋白质结合似乎支持了氧化的砷代谢产物。这种砷化氢代谢产物与砷氧化物产生的任何物质都非常不同。砷化镓的溶解度低于任何其他砷化合物,并且其肺损伤强度不成比例,这表明砷化镓具有接触相互作用的部位,并且氧化反应对其毒性很重要。砷化镓暴露后的尿代谢产物与氧化砷排出的尿代谢产物相同,但负责砷化镓毒性作用的化学物质不同于氧化砷。审查得出的结论是,没有足够的证据将不同的砷化合物等同起来。砷化合物的毒性存在若干差异,需要大量研究。

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