首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Prolonged protein deprivation differentially affects calretinin- and parvalbumin-containing interneurons in the hippocampal dentate gyrus of adult rats
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Prolonged protein deprivation differentially affects calretinin- and parvalbumin-containing interneurons in the hippocampal dentate gyrus of adult rats

机译:长时间的蛋白质剥夺差异性影响成年大鼠海马齿状回中含有降钙素和小白蛋白的中间神经元

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摘要

Protein deprivation is a detrimental nutritional state that induces several deleterious changes in the rat hippocampal formation. In this study, we compared the effects of protein deprivation in the number of parvalbumin (PV)-immunoreactive and calretinin (CR)-immunoreactive interneurons of the dentate gyrus, which are involved in the control of calcium homeostasis and fine tuning of the hippocampal circuits. Two month-old rats were randomly assigned to control and low-protein diet groups. The rats of the latter group were fed with a low-protein diet (8% casein) for 6 months. All animals were perfused at 8 months of age. The number of neurons expressing CR in the molecular layer and in the hilus of dentate gyrus was reduced in protein-deprived rats. Conversely, protein deprivation increased the number of PV-containing interneurons in the dentate granule cell layer and hilus. These results support the view that protein deprivation may disturb calcium homeostasis, leading to neuronal death including GABAergic interneurons expressing CR. In the other hand, the up-regulation of PV cells may reflect a protective mechanism to counteract the calcium overload and protect the remaining neurons of the dentate gyrus.
机译:蛋白质剥夺是一种有害的营养状态,会在大鼠海马结构中引起一些有害的变化。在这项研究中,我们比较了蛋白质剥夺对齿状回的小白蛋白(PV)免疫反应和钙调蛋白(CR)免疫反应中间神经元数量的影响,这些神经元参与钙稳态的控制和海马回路的微调。 。将两个月大的大鼠随机分为对照组和低蛋白饮食组。后一组大鼠接受低蛋白饮食(8%酪蛋白)喂养6个月。在8个月大时对所有动物进行灌注。在蛋白质剥夺的大鼠中,在分子层和齿状回的hilus中表达CR的神经元数量减少。相反,蛋白质剥夺增加了齿状颗粒细胞层和孔中含PV的中间神经元的数量。这些结果支持这样一种观点,即蛋白质剥夺可能会干扰钙稳态,从而导致神经元死亡,包括表达CR的GABA能中间神经元。另一方面,PV细胞的上调可能反映了一种保护机制,以抵消钙超载并保护齿状回的其余神经元。

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