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首页> 外文期刊>Drug and Chemical Toxicology >Protective role of zinc against the neurotoxicity induced by exposure to cadmium during gestation and lactation periods on hippocampal volume of pups tested in early adulthood
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Protective role of zinc against the neurotoxicity induced by exposure to cadmium during gestation and lactation periods on hippocampal volume of pups tested in early adulthood

机译:锌对在成年早期测试的幼虫和哺乳期间诱导和泌乳期间暴露于镉诱导的神经毒性的保护作用

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The present study was conducted to assess the possible effect of cadmium (Cd) throughout gestation and lactation on the volume of the subregion of the hippocampus as well as the potential protective role of zinc (Zn) against Cd neurotoxicity. For this purpose, female rats received either tap water, Cd, Zn or Cd+Zn in their drinking water during gestation and lactation. At postnatal day 35 (PND35), the male pups were sacrificed, and their brains were taken for histologic, chemical, and biochemical analysis. Hippocampal volume was measured in histologic brain slices using Cavalieri's principle. Zn depletion was observed in the brains of pups issued from mothers exposed to Cd. Biochemical analysis further revealed that Cd exposure significantly increases the superoxide dismutase (SOD) activity, as well as the metallothionein (MT) level. During histologic investigation, our results showed that gestational and lactational exposure to Cd significantly altered and decreased the volume of CA1, CA3 pyramidal cell layer and the dentate gyrus. However, there were no marked differences shown in CA2 subfield. Compared to Cd group, co-treatment with Cd and Zn provided correction of the changes induced by the Cd exposure. These results highlight the protective role of Zn against Cd-induced alteration in the hippocampus which is a crucial structure implicated in learning and memory processes.
机译:进行本研究以评估镉(CD)在海马次区域的体积上的妊娠和泌乳的可能影响以及锌(Zn)对Cd神经毒性的潜在保护作用。为此目的,在妊娠和哺乳期间,在其饮用水中接受自来水,Cd,Zn或Cd + Zn。在第35天(PND35)中,处死雄性幼崽,采取其血液用于组织学,化学和生物化学分析。使用Cavalieri原理测量HippoMampal体积在组织学脑切片中测量。在暴露于CD的母亲发出的母猪中观察到Zn耗尽。生化分析进一步揭示了CD暴露显着增加超氧化物歧化酶(SOD)活性,以及​​金属硫蛋白蛋白(MT)水平。在组织学调查期间,我们的结果表明,妊娠和泌乳暴露于CD显着改变和降低Ca1,Ca3金字塔型细胞层和齿状回物的体积。但是,CA2子场中没有显示出明显的差异。与CD组相比,用CD和Zn的共同治疗提供了CD暴露诱导的变化的校正。这些结果突出了Zn对海马CD诱导的改变的保护作用,这是一种涉及学习和记忆过程的重要结构。

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