Microglial derived tumor necrosis factor-α drives Alzheimer's disease-related neuronal cell cycle events

小胶质细胞衍生的肿瘤坏死因子-α驱动阿尔茨海默病相关的神经元细胞周期事件

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作者:Kiran Bhaskar, Nicole Maphis, Guixiang Xu, Nicholas H Varvel, Olga N Kokiko-Cochran, Jason P Weick, Susan M Staugaitis, Astrid Cardona, Richard M Ransohoff, Karl Herrup, Bruce T Lamb

Abstract

Massive neuronal loss is a key pathological hallmark of Alzheimer's disease (AD). However, the mechanisms are still unclear. Here we demonstrate that neuroinflammation, cell autonomous to microglia, is capable of inducing neuronal cell cycle events (CCEs), which are toxic for terminally differentiated neurons. First, oligomeric amyloid-beta peptide (AβO)-mediated microglial activation induced neuronal CCEs via the tumor-necrosis factor-α (TNFα) and the c-Jun Kinase (JNK) signaling pathway. Second, adoptive transfer of CD11b+ microglia from AD transgenic mice (R1.40) induced neuronal cyclin D1 expression via TNFα signaling pathway. Third, genetic deficiency of TNFα in R1.40 mice (R1.40-Tnfα(-/-)) failed to induce neuronal CCEs. Finally, the mitotically active neurons spatially co-exist with F4/80+ activated microglia in the human AD brain and that a portion of these neurons are apoptotic. Together our data suggest a cell-autonomous role of microglia, and identify TNFα as the responsible cytokine, in promoting neuronal CCEs in the pathogenesis of AD.

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