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Exercise-linked FNDC5/irisin rescues synaptic plasticity and memory defects in Alzheimer’s models

机译:与运动有关的FNDC5 /鸢尾素可挽救阿尔茨海默病模型中的突触可塑性和记忆缺陷

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摘要

Defective brain hormonal signaling has been associated with Alzheimer’s disease (AD), a disorder characterized by synapse and memory failure. Irisin is an exercise-induced myokine released upon cleavage of membrane-bound precursor protein FNDC5, also expressed in the hippocampus. Here we show that FNDC5/irisin levels are reduced in AD hippocampi and cerebrospinal fluid, and in experimental AD models. Knockdown of brain FNDC5/irisin impaired long-term potentiation and novel object recognition memory in mice. Conversely, boosting brain levels of FNDC5/irisin rescued synaptic plasticity and memory in AD mouse models. Peripheral overexpression of FNDC5/irisin rescued memory impairment, whereas blockade of either peripheral or brain FNDC5/irisin attenuated the neuroprotective actions of physical exercise on synaptic plasticity and memory in AD mice. By showing that FNDC5/irisin is an important mediator of the beneficial effects of exercise in AD models, our findings place FNDC5/irisin as a novel agent capable of opposing synapse failure and memory impairment in AD.
机译:脑激素信号缺陷与阿尔茨海默氏病(AD)有关,后者是一种以突触和记忆力衰竭为特征的疾病。 Irisin是一种运动诱导的肌动蛋白,被膜结合的前体蛋白FNDC5切割后释放,该蛋白也在海马中表达。在这里,我们显示FNDC5 / irisin水平在AD海马和脑脊髓液以及实验性AD模型中降低。敲除FNDC5 / irisin会损害小鼠的长期增强能力和新颖的物体识别记忆。相反,在AD小鼠模型中,提高FNDC5 / irisin的脑水平可以挽救突触的可塑性和记忆力。 FNDC5 / irisin的外周过度表达可挽救记忆障碍,而外周或大脑FNDC5 / irisin的阻断则减弱体育锻炼对AD小鼠突触可塑性和记忆的神经保护作用。通过证明FNDC5 / irisin是AD模型运动的有益作用的重要介质,我们的发现将FNDC5 / irisin视为能够对抗AD中突触衰竭和记忆障碍的新型药物。

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