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Integrated multimodal cell atlas of Alzheimer’s disease

Authors :
Gabitto, Mariano I.
Travaglini, Kyle J.
Rachleff, Victoria M.
Kaplan, Eitan S.
Long, Brian
Ariza, Jeanelle
Ding, Yi
Mahoney, Joseph T.
Dee, Nick
Goldy, Jeff
Melief, Erica J.
Agrawal, Anamika
Kana, Omar
Zhen, Xingjian
Barlow, Samuel T.
Brouner, Krissy
Campos, Jazmin
Campos, John
Carr, Ambrose J.
Casper, Tamara
Chakrabarty, Rushil
Clark, Michael
Cool, Jonah
Dalley, Rachel
Darvas, Martin
Ding, Song-Lin
Dolbeare, Tim
Egdorf, Tom
Esposito, Luke
Ferrer, Rebecca
Fleckenstein, Lynn E.
Gala, Rohan
Gary, Amanda
Gelfand, Emily
Gloe, Jessica
Guilford, Nathan
Guzman, Junitta
Hirschstein, Daniel
Ho, Windy
Hupp, Madison
Jarsky, Tim
Johansen, Nelson
Kalmbach, Brian E.
Keene, Lisa M.
Khawand, Sarah
Kilgore, Mitchell D.
Kirkland, Amanda
Kunst, Michael
Lee, Brian R.
Leytze, Mckaila
Mac Donald, Christine L.
Malone, Jocelin
Maltzer, Zoe
Martin, Naomi
McCue, Rachel
McMillen, Delissa
Mena, Gonzalo
Meyerdierks, Emma
Meyers, Kelly P.
Mollenkopf, Tyler
Montine, Mark
Nolan, Amber L.
Nyhus, Julie K.
Olsen, Paul A.
Pacleb, Maiya
Pagan, Chelsea M.
Peña, Nicholas
Pham, Trangthanh
Pom, Christina Alice
Postupna, Nadia
Rimorin, Christine
Ruiz, Augustin
Saldi, Giuseppe A.
Schantz, Aimee M.
Shapovalova, Nadiya V.
Sorensen, Staci A.
Staats, Brian
Sullivan, Matt
Sunkin, Susan M.
Thompson, Carol
Tieu, Michael
Ting, Jonathan T.
Torkelson, Amy
Tran, Tracy
Valera Cuevas, Nasmil J.
Walling-Bell, Sarah
Wang, Ming-Qiang
Waters, Jack
Wilson, Angela M.
Xiao, Ming
Haynor, David
Gatto, Nicole M.
Jayadev, Suman
Mufti, Shoaib
Ng, Lydia
Mukherjee, Shubhabrata
Crane, Paul K.
Latimer, Caitlin S.
Levi, Boaz P.
Smith, Kimberly A.
Close, Jennie L.
Miller, Jeremy A.
Hodge, Rebecca D.
Larson, Eric B.
Grabowski, Thomas J.
Hawrylycz, Michael
Keene, C. Dirk
Lein, Ed S.
Source :
Nature Neuroscience; 20240101, Issue: Preprints p1-18, 18p
Publication Year :
2024

Abstract

Alzheimer’s disease (AD) is the leading cause of dementia in older adults. Although AD progression is characterized by stereotyped accumulation of proteinopathies, the affected cellular populations remain understudied. Here we use multiomics, spatial genomics and reference atlases from the BRAIN Initiative to study middle temporal gyrus cell types in 84 donors with varying AD pathologies. This cohort includes 33 male donors and 51 female donors, with an average age at time of death of 88 years. We used quantitative neuropathology to place donors along a disease pseudoprogression score. Pseudoprogression analysis revealed two disease phases: an early phase with a slow increase in pathology, presence of inflammatory microglia, reactive astrocytes, loss of somatostatin+inhibitory neurons, and a remyelination response by oligodendrocyte precursor cells; and a later phase with exponential increase in pathology, loss of excitatory neurons and Pvalb+and Vip+inhibitory neuron subtypes. These findings were replicated in other major AD studies.

Details

Language :
English
ISSN :
10976256 and 15461726
Issue :
Preprints
Database :
Supplemental Index
Journal :
Nature Neuroscience
Publication Type :
Periodical
Accession number :
ejs67696049
Full Text :
https://doi.org/10.1038/s41593-024-01774-5