4.6 Article

Amyloid- pathology enhances pathological fibrillary tau seeding induced by Alzheimer PHF in vivo

期刊

ACTA NEUROPATHOLOGICA
卷 137, 期 3, 页码 397-412

出版社

SPRINGER
DOI: 10.1007/s00401-018-1953-5

关键词

Paired helical filaments; Neurofibrillary tangles; A; Prion-like tau propagation; Tau seeding; Alzheimer's disease

资金

  1. Belgian Fonds de la Recherche Scientifique Medicale [T.0023.15, T.0027.19]
  2. Fund Aline (King Baudouin Foundation)
  3. Foundation for Alzheimer Research (FRA/SAO)
  4. Genicot Fund

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Neuropathological analysis in Alzheimer's disease (AD) and experimental evidence in transgenic models overexpressing frontotemporal dementia with Parkinsonism linked to chromosome 17 (FTDP-17) mutant tau suggest that amyloid- pathology enhances the development of tau pathology. In this work, we analyzed this interaction independently of the overexpression of an FTDP-17 mutant tau, by analyzing tau pathology in wild-type (WT), 5xFAD, APP(-/-) and tau(-/-) mice after stereotaxic injection in the somatosensory cortex of short-length native human AD-PHF. Gallyas and phosphotau-positive tau inclusions developed in WT, 5xFAD, and APP(-/-) but not in tau(-/-) mice. Ultrastructural analysis demonstrated their intracellular localization and that they were composed of straight filaments. These seeded tau inclusions were composed only of endogenous murine tau exhibiting a tau antigenic profile similar to tau aggregates in AD. Insoluble tau level was higher and ipsilateral anteroposterior and contralateral cortical spreading of tau inclusions was more important in AD-PHF-injected 5xFAD mice than in WT mice. The formation of large plaque-associated dystrophic neurites positive for oligomeric and phosphotau was observed in 5xFAD mice injected with AD-PHF but never in control-injected or in non-injected 5xFAD mice. An increased level of the p25 activator of CDK5 kinase was found in AD-PHF-injected 5xFAD mice. These data demonstrate in vivo that the presence of A pathology enhances experimentally induced tau seeding of endogenous, wild-type tau expressed at physiological level, and demonstrate the fibrillar nature of heterotopically seeded endogenous tau. These observations further support the hypothesis that A enhances tau pathology development in AD through increased pathological tau spreading.

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