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首页> 外文期刊>Aging cell. >Chelation of hippocampal zinc enhances long‐term potentiation and synaptic tagging/capture in CA1 pyramidal neurons of aged rats: implications to aging and memory
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Chelation of hippocampal zinc enhances long‐term potentiation and synaptic tagging/capture in CA1 pyramidal neurons of aged rats: implications to aging and memory

机译:海马锌螯合增强衰老大鼠CA1锥体神经元的长期增强作用和突触标记/捕获:对衰老和记忆的影响

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摘要

Summary Aging is associated with decline in cognitive functions, prominently in the memory consolidation and association capabilities. Hippocampus plays a crucial role in the formation and maintenance of long-term associative memories, and a significant body of evidence shows that impairments in hippocampal function correlate with aging-related memory loss. A number of studies have implicated alterations in hippocampal synaptic plasticity, such as long-term potentiation (LTP), in age-related cognitive decline although exact mechanisms underlying are not completely clear. Zinc deficiency and the resultant adverse effects on cognition have been well studied. However, the role of excess of zinc in synaptic plasticity, especially in aging, is not addressed well. Here, we have investigated the hippocampal zinc levels and the impairments in synaptic plasticity, such as LTP and synaptic tagging and capture (STC), in the CA1 region of acute hippocampal slices from 82- to 84-week-old male Wistar rats. We report increased zinc levels in the hippocampus of aged rats and also deficits in the tetani-induced and dopaminergic agonist-induced late-LTP and STC. The observed deficits in synaptic plasticity were restored upon chelation of zinc using a cell-permeable chelator. These data suggest that functional plasticity and associativity can be successfully established in aged neural networks by chelating zinc with cell-permeable chelating agents.
机译:摘要衰老与认知功能下降有关,尤其是在记忆整合和联想能力方面。海马在长期联想记忆的形成和维持中起着至关重要的作用,大量证据表明,海马功能受损与衰老相关的记忆丧失有关。尽管一些潜在的确切机制尚不完全清楚,但许多研究都暗示了与年龄相关的认知能力下降的海马突触可塑性改变,例如长期增强(LTP)。锌缺乏及其对认知的不良影响已得到很好的研究。然而,锌在突触可塑性,特别是在衰老中的作用尚未得到很好的解决。在这里,我们研究了82至84周龄雄性Wistar大鼠急性海马切片CA1区的海马锌水平和突触可塑性的损伤,例如LTP和突触标记和捕获(STC)。我们报告老年大鼠海马中锌水平增加,以及在破伤风引起的和多巴胺能激动剂引起的晚期LTP和STC缺乏。使用细胞可渗透的螯合剂螯合锌后,可以恢复突触可塑性的缺陷。这些数据表明,通过将锌与细胞可渗透的螯合剂螯合,可以在老化的神经网络中成功建立功能可塑性和缔合性。

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