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首页> 外文期刊>International Journal of Neuroscience >Increased tunel positive cells in CA1, CA2, and CA3 subfields of rat hippocampus due to copper and ethanol co-exposure.
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Increased tunel positive cells in CA1, CA2, and CA3 subfields of rat hippocampus due to copper and ethanol co-exposure.

机译:由于铜和乙醇的共同暴露,大鼠海马CA1,CA2和CA3子区的tunel阳性细胞增加。

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摘要

Copper (Cu) is an essential element for life. However, it is toxic at excessive doses, whereas exposure to ethanol (EtOH) has known to cause morphological changes, degeneration, and neuronal loss in central nervous system. A previous investigation by the authors' group showed that Cu and EtOH co-treatment cause severe hippocampal neuronal loss in CA1, CA2, and CA3 subfields of rat hippocampus. This study was designed to analyze the possible mechanism(s) of action of this effect. In addition, the possible neurogenesis in response to a potent neurodegenerative treatment in rat hippocampus was analyzed. Results demonstrated that Cu and EtOH induced neuronal loss in rat hippocampus was in correlation with the increased cell death analyzed on the basis of TdT-mediated dUTP nick end labeling (TUNEL) assay. On the other hand, neuronal regenerative activity was detectable in analyzed CA1, CA2, and CA3 subfields of the rat hippocampus analyzed on the basis of 5-bromo-2'-deoxy-uridine (BrdU) labeling assay; however, this activity in treated group was not significantly different from that of control group.
机译:铜(Cu)是生命必不可少的元素。但是,它在过量时有毒,而已知暴露于乙醇(EtOH)会引起中枢神经系统的形态变化,变性和神经元丢失。作者小组先前的调查显示,铜和乙醇的共同治疗会导致大鼠海马CA1,CA2和CA3子区严重的海马神经元丢失。本研究旨在分析这种作用的可能机制。另外,分析了在大鼠海马中响应强力神经退行性治疗可能的神经发生。结果表明,根据TdT介导的dUTP缺口末端标记(TUNEL)分析,Cu和EtOH诱导的大鼠海马神经元丢失与细胞死亡增加相关。另一方面,在基于5-溴-2'-脱氧尿苷(BrdU)标记测定法分析的大鼠海马CA1,CA2和CA3子域中,可检测到神经元再生活性。然而,治疗组的这种活性与对照组没有显着差异。

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