| Literature DB >> 31812991 |
Nathalie Bodd Halaas1,2,3, Kristi Henjum1,3,4, Kaj Blennow5, Shams Dakhil1,3, Ane-Victoria Idland1,2,3, Lars Ng Nilsson4,6, Donatas Sederevicius2,7, Didac Vidal-Piñeiro2, Kristine B Walhovd2,7, Torgeir Brunn Wyller1,3, Henrik Zetterberg7,8,9,10,11, Leiv Otto Watne1, Anders M Fjell2,7.
Abstract
Neuroinflammation may be a key factor in brain atrophy in aging and age-related neurodegenerative disease. The objective of this study was to test the association between microglial expression of soluble Triggering Receptor Expressed on Myeloid Cells 2 (sTREM2), as a measure of neuroinflammation, and brain atrophy in cognitively unimpaired older adults. Brain magnetic resonance imagings (MRIs) and cerebrospinal fluid (CSF) sTREM2, total tau (t-tau), phosphorylated181 tau (p-tau), and Aβ42 were analyzed in 115 cognitively unimpaired older adults, classified according to the A/T/(N)-framework. MRIs were repeated after 2 (n = 95) and 4 (n = 62) years. High baseline sTREM2 was associated with accelerated cortical thinning in the temporal cortex of the left hemisphere, as well as bilateral hippocampal atrophy, independently of age, Aβ42, and tau. sTREM2-related atrophy only marginally increased with biomarker positivity across the AD continuum (A-T- #x2292; A+T- #x2292; A+T+) but was significantly stronger in participants with a high level of p-tau (T+). sTREM2-related cortical thinning correlated significantly with areas of high microglial-specific gene expression in the Allen Human Brain Atlas. In conclusion, increased CSF sTREM2 was associated with accelerated cortical and hippocampal atrophy in cognitively unimpaired older participants, particularly in individuals with tau pathology. This suggests a link between neuroinflammation, neurodegeneration, and amyloid-independent tauopathy.Entities:
Keywords: Alzheimer’s disease; aging; brain atrophy; neuroinflammation; tau
Year: 2020 PMID: 31812991 DOI: 10.1093/cercor/bhz240
Source DB: PubMed Journal: Cereb Cortex ISSN: 1047-3211 Impact factor: 5.357