内嗅皮质
猕猴
恒河猴
神经科学
病理
神经病理学
皮质(解剖学)
前额叶皮质
神经退行性变
淀粉样蛋白(真菌学)
阿尔茨海默病
心理学
疾病
海马体
生物
医学
认知
免疫学
作者
Constantinos D. Paspalas,Becky C. Carlyle,Shannon Leslie,Todd M. Preuss,Johanna L. Crimins,Anita Hüttner,Christopher H. van Dyck,Douglas L. Rosene,Angus C. Nairn,Amy F.T. Arnsten
标识
DOI:10.1016/j.jalz.2017.11.005
摘要
Abstract Introduction An animal model of late‐onset Alzheimer's disease is needed to research what causes degeneration in the absence of dominant genetic insults and why the association cortex is particularly vulnerable to degeneration. Methods We studied the progression of tau and amyloid cortical pathology in the aging rhesus macaque using immunoelectron microscopy and biochemical assays. Results Aging macaques exhibited the same qualitative pattern and sequence of tau and amyloid cortical pathology as humans, reaching Braak stage III/IV. Pathology began in the young‐adult entorhinal cortex with protein kinase A‐phosphorylation of tau, progressing to fibrillation with paired helical filaments and mature tangles in oldest animals. Tau pathology in the dorsolateral prefrontal cortex paralleled but lagged behind the entorhinal cortex, not afflicting the primary visual cortex. Discussion The aging rhesus macaque provides the long‐sought animal model for exploring the etiology of late‐onset Alzheimer's disease and for testing preventive strategies.
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