Amyloid accelerates tau propagation and toxicity in a model of early Alzheimer's disease

被引:173
|
作者
Pooler, Amy M. [1 ,2 ]
Polydoro, Manuela [1 ]
Maury, Eduardo A. [1 ]
Nicholls, Samantha B. [1 ]
Reddy, Snigdha M. [1 ]
Wegmann, Susanne [1 ]
William, Christopher [1 ]
Saqran, Lubna [1 ]
Cagsal-Getkin, Ozge [1 ]
Pitstick, Rose [3 ]
Beier, David R. [4 ]
Carlson, George A. [3 ]
Spires-Jones, Tara L. [1 ,5 ]
Hyman, Bradley T. [1 ]
机构
[1] Harvard Univ, Sch Med, Massachusetts Gen Hosp, Dept Neurol, 114 16th St, Charlestown, MA 02129 USA
[2] Kings Coll London, Inst Psychiat Psychol & Neurosci, Dept Basic & Clin Neurosci, London SE5 8AF, England
[3] McLaughlin Res Inst, Great Falls, MT 59405 USA
[4] Seattle Childrens Res Inst, Ctr Dev Biol & Regenerat Med, Seattle, WA USA
[5] Univ Edinburgh, Ctr Cognit & Neural Syst, Edinburgh EH8 9JZ, Midlothian, Scotland
来源
基金
美国国家卫生研究院;
关键词
Neurofibrillary tangles; Amyloid plaques; Alzheimer's disease; Tauopathy; Aggregation; NEUROFIBRILLARY TANGLES; BETA-DEPOSITION; RTGTAUEC MODEL; PATHOLOGY; BRAIN;
D O I
10.1186/s40478-015-0199-x
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Introduction: In early stages of Alzheimer's disease (AD), neurofibrillary tangles (NFT) are largely restricted to the entorhinal cortex and medial temporal lobe. At later stages, when clinical symptoms generally occur, NFT involve widespread limbic and association cortices. At this point in the disease, amyloid plaques are also abundantly distributed in the cortex. This observation from human neuropathological studies led us to pose two alternative hypotheses: that amyloid in the cortex is permissive for the spread of tangles from the medial temporal lobe, or that these are co-occurring but not causally related events simply reflecting progression of AD pathology. Results: We now directly test the hypothesis that cortical amyloid acts as an accelerant for spreading of tangles beyond the medial temporal lobe. We crossed rTgTauEC transgenic mice that demonstrate spread of tau from entorhinal cortex to other brain structures at advanced age with APP/PS1 mice, and examined mice with either NFTs, amyloid pathology, or both. We show that concurrent amyloid deposition in the cortex 1) leads to a dramatic increase in the speed of tau propagation and an extraordinary increase in the spread of tau to distal brain regions, and 2) significantly increases tau-induced neuronal loss. Conclusions: These data strongly support the hypothesis that cortical amyloid accelerates the spread of tangles throughout the cortex and amplifies tangle-associated neural system failure in AD.
引用
收藏
页数:11
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