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Neurofibrillary tangle-bearing neurons are functionally integrated in cortical circuits in vivo

机译:携带神经原纤维缠结的神经元在体内功能上整合在皮层回路中

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摘要

Alzheimer's disease (AD) is pathologically characterized by the deposition of extracellular amyloid-β plaques and intracellular aggregation of tau protein in neurofibrillary tangles (NFTs) (1, 2). Progression of NFT pathology is closely correlated with both increased neurodegeneration and cognitive decline in AD (3) and other tauopathies, such as frontotemporal dementia (4, 5). The assumption that mislocalization of tau into the somatodendritic compartment (6) and accumulation of fibrillar aggregates in NFTs mediates neurodegeneration underlies most current therapeutic strategies aimed at preventing NFT formation or disrupting existing NFTs (7, 8). Although several disease-associated mutations cause both aggregation of tau and neurodegeneration, whether NFTs per se contribute to neuronal and network dysfunction in vivo is unknown (9). Here we used awake in vivo two-photon calcium imaging to monitor neuronal function in adult rTg4510 mice that overexpress a human mutant form of tau (P301L) and develop cortical NFTs by the age of 7-8 mo (10). Unexpectedly, NFT-bearing neurons in the visual cortex appeared to be completely functionally intact, to be capable of integrating dendritic inputs and effectively encoding orientation and direction selectivity, and to have a stable baseline resting calcium level. These results suggest a reevaluation of the common assumption that insoluble tau aggregates are sufficient to disrupt neuronal function.
机译:阿尔茨海默氏病(AD)的病理特征是神经原纤维缠结(NFT)中细胞外淀粉样β斑块的沉积和tau蛋白的细胞内聚集(1、2)。 NFT病理学的进展与AD的神经退行性增高和认知能力下降密切相关(3)和其他颞叶痴呆(4,5)。假设tau错位到体树突状区室(6)和NFT中纤维状聚集物的积累介导了神经变性,这是目前旨在预防NFT形成或破坏现有NFT的大多数治疗策略的依据(7、8)。尽管几种与疾病相关的突变会引起tau的聚集和神经退行性变,但NFT本身是否会导致体内神经元和网络功能障碍尚不清楚(9)。在这里,我们使用清醒的体内两光子钙成像技术来监测成年rTg4510小鼠的神经元功能,该小鼠过表达人类突变形式的tau(P301L),并在7-8 mo时发育皮质NFT(10)。出乎意料的是,视觉皮层中带有NFT的神经元似乎功能完整,能够整合树突状输入并有效编码方向和方向选择性,并且具有稳定的基线静息钙水平。这些结果表明,重新评估了不溶性tau聚集体足以破坏神经元功能的普遍假设。

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