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首页> 外文期刊>Cell and Tissue Research >Phosphorylated Tau protein in the myenteric plexus of the ileum and colon of normothermic rats and during synthetic torpor
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Phosphorylated Tau protein in the myenteric plexus of the ileum and colon of normothermic rats and during synthetic torpor

机译:磷酸化的tau蛋白在Hyeeteric丛生和常温大鼠结肠的神经丛和合成托孢子期间

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摘要

Tau protein is of primary importance for neuronal homeostasis and when hyperphosphorylated (PP-Tau), it tends to aggregate in neurofibrillary tangles, as is the case with tauopathies, a class of neurodegenerative disorders. Reversible PP-Tau accumulation occurs in the brain of hibernating rodents and it was recently observed in rats (a non-hibernator) during synthetic torpor (ST), a pharmacological-induced torpor-like condition. To date, the expression of PP-Tau in the rat enteric nervous system (ENS) is still unknown. The present study immunohistochemically investigates the PP-Tau expression in the myenteric plexus of the ileum and colon of normothermic rats (CTRL) and during ST, focusing on the two major subclasses of enteric neurons, i.e., cholinergic and nitrergic. Results showed that both groups of rats expressed PP-Tau, with a significantly increased percentage of PP-Tau immunoreactive (IR) neurons in ST vs. CTRL. In all rats, the majority of PP-Tau-IR neurons were cholinergic. In ST rats, the percentage of PP-Tau-IR neurons expressing a nitrergic phenotype increased, although with no significant differences between groups. In addition, the ileum of ST rats showed a significant decrease in the percentage of nitrergic neurons. In conclusion, our findings suggest an adaptive response of ENS to very low core body temperatures, with changes involving PP-tau expression in enteric neurons, especially the ileal nitrergic subpopulation. In addition, the high presence of PP-Tau in cholinergic neurons, specifically, is very interesting and deserves further investigation. Altogether, these data strengthen the hypothesis of a common cellular mechanism triggered by ST, natural hibernation and tauopathies occurring in ENS neurons.
机译:Tau蛋白对神经元内环境稳定至关重要,当过度磷酸化(PP-Tau)时,它倾向于聚集在神经原纤维缠结中,就像tauopathy(一类神经退行性疾病)一样。在冬眠啮齿类动物的大脑中发生可逆的PP-Tau积累,最近在大鼠(非冬眠动物)中观察到合成性麻痹(ST),这是一种药理学诱导的麻痹样状态。迄今为止,PP-Tau在大鼠肠神经系统(ENS)中的表达尚不清楚。本研究采用免疫组织化学方法研究了常温大鼠回肠和结肠肌间神经丛(CTRL)和ST期间PP-Tau的表达,重点研究了肠道神经元的两个主要亚类,即胆碱能和氮能。结果显示,两组大鼠均表达PP-Tau,ST和CTRL中PP-Tau免疫反应(IR)神经元的百分比显著增加。在所有大鼠中,大多数PP-Tau IR神经元为胆碱能神经元。在ST大鼠中,表达氮能表型的PP-Tau-IR神经元的百分比增加,尽管各组之间没有显著差异。此外,ST大鼠回肠的氮能神经元百分比显著降低。总之,我们的研究结果表明,ENS对极低的核心体温有适应性反应,肠道神经元,尤其是回肠氮能亚群中的PP-tau表达发生变化。此外,特别是胆碱能神经元中PP-Tau的高度存在非常有趣,值得进一步研究。总之,这些数据加强了由ST、自然冬眠和ENS神经元中发生的tauopathy触发的共同细胞机制的假设。

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