首页> 美国卫生研究院文献>Toxics >Chromium Selectively Accumulates in the Rat Hippocampus after 90 Days of Exposure to Cr(VI) in Drinking Water and Induces Age- and Sex-Dependent Metal Dyshomeostasis
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Chromium Selectively Accumulates in the Rat Hippocampus after 90 Days of Exposure to Cr(VI) in Drinking Water and Induces Age- and Sex-Dependent Metal Dyshomeostasis

机译:铬在暴露于饮用水中的 Cr(VI) 90 天后选择性地积聚在大鼠海马体中并诱导年龄和性别依赖性金属稳态障碍

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摘要

Hexavalent chromium (Cr[VI]) is a widespread environmental pollutant in air and water that is primarily attributed to industrial pollution. The current maximum contaminant levels (MCLs) for drinking water from the World Health Organization and the U.S. Environmental Protection Agency (0.05 and 0.1 mg/L, respectively) were set based on contact dermatitis and warrant further toxicological investigation. While Cr(VI) is neurotoxic and accumulates in the brain, most animal studies only report whole-brain Cr, leaving large knowledge gaps. Few studies consider differences between ages or sexes, and fewer consider essential metal dyshomeostasis. We sought to investigate where Cr accumulates in the brain, considering sex and age differences, following a 90-day drinking water exposure to current MCLs. Here, we report Cr levels in six brain regions of rats exposed to drinking water Cr(VI). We observed Cr only accumulated in the hippocampus, and only in older females. We further assessed changes to essential metals in the hippocampus, observing opposite effects across sexes and between young rats compared to older rats. In sum, our data indicate drinking water Cr(VI) selectively targeted the hippocampus, with geriatric females accumulating the most Cr, and induced significant essential metal dyshomeostasis even in tissues lacking evident Cr accumulation.
机译:六价铬 (Cr[VI]) 是空气和水中广泛存在的环境污染物,主要归因于工业污染。世界卫生组织和美国环境保护署目前饮用水的最高污染物水平 (MCL)(分别为 0.05 和 0.1 mg/L)是根据接触性皮炎设定的,需要进一步的毒理学调查。虽然 Cr(VI) 具有神经毒性并在大脑中积累,但大多数动物研究仅报告全脑 Cr,留下了很大的知识空白。很少有研究考虑年龄或性别之间的差异,较少研究考虑基本金属稳态失调。我们试图研究 Cr 在饮用水暴露于当前 MCL 90 天后,考虑到性别和年龄差异,在大脑中积累的位置。在这里,我们报告了暴露于饮用水 Cr(VI) 的大鼠的六个大脑区域的 Cr 水平。我们观察到 Cr 仅在海马体中积累,并且仅在老年女性中积累。我们进一步评估了海马体中必需金属的变化,观察到与老年大鼠相比,跨性别和年轻大鼠之间的相反影响。总之,我们的数据表明饮用水 Cr (VI) 选择性地靶向海马体,其中老年女性积累的 Cr 最多,即使在缺乏明显 Cr 积累的组织中也诱导了显着的必需金属稳态。

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