陶氏病
神经科学
神经退行性变
τ蛋白
失智症
进行性核上麻痹
转基因小鼠
额颞叶变性
神经血管束
阿尔茨海默病
病理
生物
心理学
转基因
痴呆
医学
疾病
生物化学
基因
作者
Joshua T. Emmerson,Sonia Do Carmo,Yingying Liu,Ali Shalhoub,Ai Liu,Quentin Bonomo,Janice C. Malcolm,Lionel Breuillaud,A. Claudio Cuello
标识
DOI:10.1016/j.nbd.2023.106227
摘要
Tauopathies, including frontotemporal dementia (FTD) and Alzheimer’s disease (AD), clinically present with progressive cognitive decline and the deposition of neurofibrillary tangles (NFTs) in the brain. Neurovascular compromise is also prevalent in AD and FTD however the relationship between tau and the neurovascular unit is less understood relative to other degenerative phenotypes. Current animal models confer the ability to recapitulate aspects of the CNS tauopathies, however, existing models either display overaggressive phenotypes, or do not develop neuronal loss or genuine neurofibrillary lesions. In this report, we communicate the longitudinal characterization of brain tauopathy in a novel transgenic rat model, coded McGill-R955-hTau. The model expresses the longest isoform of human P301S tau. Homozygous R955-hTau rats displayed a robust, progressive accumulation of mutated human tau leading to the detection of tau hyperphosphorylation and cognitive deficits accelerating from 14 months of age. This model features extensive tau hyperphosphorylation with endogenous tau recruitment, authentic neurofibrillary lesions, and tau-associated neuronal loss, ventricular dilation, decreased brain volume, and gliosis in aged rats. Further, we demonstrate how neurovascular integrity becomes compromised at aged life stages using a combination of electron microscopy, injection of the tracer horseradish peroxidase and immunohistochemical approaches.
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