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Prenatal choline supplementation attenuates neuropathological response to status epilepticus in the adult rat hippocampus

机译:产前补充胆碱可减轻成年大鼠海马对癫痫持续状态的神经病理反应

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摘要

Prenatal choline supplementation (SUP) protects adult rats against spatial memory deficits observed after excitotoxin-induced status epilepticus (SE). To examine the mechanism underlying this neuroprotection, we determined the effects of SUP on a variety of hippocampal markers known to change in response to SE and thought to underlie ensuing cognitive deficits. Adult offspring from rat dams that received either a Control or SUP diet on embryonic days 12–17 were administered saline or kainic acid (i.p.) to induce SE and were euthanized 16 days later. SUP markedly attenuated seizure-induced hippocampal neurodegeneration, dentate cell proliferation, hippocampal GFAP mRNA expression levels, prevented the loss of hippocampal GAD65 protein and mRNA expression, and altered growth factor expression patterns. SUP also enhanced pre-seizure hippocampal levels of BDNF, NGF, and IGF-1, which may confer a neuroprotective hippocampal microenvironment that dampens the neuropathological response to and/or helps facilitate recovery from SE to protect cognitive function.
机译:产前胆碱补充剂(SUP)保护成年大鼠免于在兴奋性毒素诱发的癫痫持续状态(SE)后观察到的空间记忆缺陷。为了检查这种神经保护作用的潜在机制,我们确定了SUP对多种海马标志物的作用,这些海马标志物已知会对SE产生变化,并被认为是导致认知缺陷的基础。在大鼠第12-17天接受对照或SUP饮食的大坝成年后代给予生理盐水或海藻酸(i.p.)诱导SE,并在16天后实施安乐死。 SUP显着减轻癫痫发作诱导的海马神经变性,齿状细胞增殖,海马GFAP mRNA表达水平,防止海马GAD65蛋白和mRNA表达的丧失,并改变生长因子的表达方式。 SUP还增强了癫痫发作前海马的BDNF,NGF和IGF-1水平,这可能赋予神经保护性海马微环境,从而减轻对SE的神经病理反应和/或帮助其从SE恢复以保护认知功能。

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