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Torpor enhances synaptic strength and restores memory performance in a mouse model of Alzheimer's disease

Sci Rep. 2021-07; 
Christina F de Veij Mestdagh, Jaap A Timmerman, Frank Koopmans, Iryna Paliukhovich, Suzanne S M Miedema, Maaike Goris, Rolinka J van der Loo, Guido Krenning, Ka Wan Li, Huibert D Mansvelder, August B Smit, Robert H Henning, Ronald E van Kesteren
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摘要

Hibernation induces neurodegeneration-like changes in the brain, which are completely reversed upon arousal. Hibernation-induced plasticity may therefore be of great relevance for the treatment of neurodegenerative diseases, but remains largely unexplored. Here we show that a single torpor and arousal sequence in mice does not induce dendrite retraction and synapse loss as observed in seasonal hibernators. Instead, it increases hippocampal long-term potentiation and contextual fear memory. This is accompanied by increased levels of key postsynaptic proteins and mitochondrial complex I and IV proteins, indicating mitochondrial reactivation and enhanced synaptic plasticity upon arousal. Interestingly, a single to... More

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