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Early Alzheimer’s disease pathology in human cortex is associated with a transient phase of distinct cell states

Cellular perturbations underlying Alzheimer’s disease are primarily studied in human postmortem samples and model organisms. Here we generated a single-nucleus atlas from a rare cohort of cortical biopsies from living individuals with varying degrees of Alzheimer’s disease pathology. We next perform...

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Autores principales: Gazestani, Vahid, Kamath, Tushar, Nadaf, Naeem M., Burris, SJ, Rooney, Brendan, Junkkari, Antti, Vanderburg, Charles, Rauramaa, Tuomas, Therrien, Martine, Tegtmeyer, Matthew, Herukka, Sanna-Kaisa, Abdulraouf, Abdulraouf, Marsh, Samuel, Malm, Tarja, Hiltunen, Mikko, Nehme, Ralda, Stevens, Beth, Leinonen, Ville, Macosko, Evan Z.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10274680/
https://www.ncbi.nlm.nih.gov/pubmed/37333365
http://dx.doi.org/10.1101/2023.06.03.543569
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author Gazestani, Vahid
Kamath, Tushar
Nadaf, Naeem M.
Burris, SJ
Rooney, Brendan
Junkkari, Antti
Vanderburg, Charles
Rauramaa, Tuomas
Therrien, Martine
Tegtmeyer, Matthew
Herukka, Sanna-Kaisa
Abdulraouf, Abdulraouf
Marsh, Samuel
Malm, Tarja
Hiltunen, Mikko
Nehme, Ralda
Stevens, Beth
Leinonen, Ville
Macosko, Evan Z.
author_facet Gazestani, Vahid
Kamath, Tushar
Nadaf, Naeem M.
Burris, SJ
Rooney, Brendan
Junkkari, Antti
Vanderburg, Charles
Rauramaa, Tuomas
Therrien, Martine
Tegtmeyer, Matthew
Herukka, Sanna-Kaisa
Abdulraouf, Abdulraouf
Marsh, Samuel
Malm, Tarja
Hiltunen, Mikko
Nehme, Ralda
Stevens, Beth
Leinonen, Ville
Macosko, Evan Z.
author_sort Gazestani, Vahid
collection PubMed
description Cellular perturbations underlying Alzheimer’s disease are primarily studied in human postmortem samples and model organisms. Here we generated a single-nucleus atlas from a rare cohort of cortical biopsies from living individuals with varying degrees of Alzheimer’s disease pathology. We next performed a systematic cross-disease and cross-species integrative analysis to identify a set of cell states that are specific to early AD pathology. These changes–which we refer to as the Early Cortical Amyloid Response—were prominent in neurons, wherein we identified a transient state of hyperactivity preceding loss of excitatory neurons, which correlated with the selective loss of layer 1 inhibitory neurons. Microglia overexpressing neuroinflammatory-related processes also expanded as AD pathological burden increased. Lastly, both oligodendrocytes and pyramidal neurons upregulated genes associated with amyloid beta production and processing during this early hyperactive phase. Our integrative analysis provides an organizing framework for targeting circuit dysfunction, neuroinflammation, and amyloid production early in AD pathogenesis.
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spelling pubmed-102746802023-06-17 Early Alzheimer’s disease pathology in human cortex is associated with a transient phase of distinct cell states Gazestani, Vahid Kamath, Tushar Nadaf, Naeem M. Burris, SJ Rooney, Brendan Junkkari, Antti Vanderburg, Charles Rauramaa, Tuomas Therrien, Martine Tegtmeyer, Matthew Herukka, Sanna-Kaisa Abdulraouf, Abdulraouf Marsh, Samuel Malm, Tarja Hiltunen, Mikko Nehme, Ralda Stevens, Beth Leinonen, Ville Macosko, Evan Z. bioRxiv Article Cellular perturbations underlying Alzheimer’s disease are primarily studied in human postmortem samples and model organisms. Here we generated a single-nucleus atlas from a rare cohort of cortical biopsies from living individuals with varying degrees of Alzheimer’s disease pathology. We next performed a systematic cross-disease and cross-species integrative analysis to identify a set of cell states that are specific to early AD pathology. These changes–which we refer to as the Early Cortical Amyloid Response—were prominent in neurons, wherein we identified a transient state of hyperactivity preceding loss of excitatory neurons, which correlated with the selective loss of layer 1 inhibitory neurons. Microglia overexpressing neuroinflammatory-related processes also expanded as AD pathological burden increased. Lastly, both oligodendrocytes and pyramidal neurons upregulated genes associated with amyloid beta production and processing during this early hyperactive phase. Our integrative analysis provides an organizing framework for targeting circuit dysfunction, neuroinflammation, and amyloid production early in AD pathogenesis. Cold Spring Harbor Laboratory 2023-06-05 /pmc/articles/PMC10274680/ /pubmed/37333365 http://dx.doi.org/10.1101/2023.06.03.543569 Text en https://creativecommons.org/licenses/by-nd/4.0/This work is licensed under a Creative Commons Attribution-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, and only so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Gazestani, Vahid
Kamath, Tushar
Nadaf, Naeem M.
Burris, SJ
Rooney, Brendan
Junkkari, Antti
Vanderburg, Charles
Rauramaa, Tuomas
Therrien, Martine
Tegtmeyer, Matthew
Herukka, Sanna-Kaisa
Abdulraouf, Abdulraouf
Marsh, Samuel
Malm, Tarja
Hiltunen, Mikko
Nehme, Ralda
Stevens, Beth
Leinonen, Ville
Macosko, Evan Z.
Early Alzheimer’s disease pathology in human cortex is associated with a transient phase of distinct cell states
title Early Alzheimer’s disease pathology in human cortex is associated with a transient phase of distinct cell states
title_full Early Alzheimer’s disease pathology in human cortex is associated with a transient phase of distinct cell states
title_fullStr Early Alzheimer’s disease pathology in human cortex is associated with a transient phase of distinct cell states
title_full_unstemmed Early Alzheimer’s disease pathology in human cortex is associated with a transient phase of distinct cell states
title_short Early Alzheimer’s disease pathology in human cortex is associated with a transient phase of distinct cell states
title_sort early alzheimer’s disease pathology in human cortex is associated with a transient phase of distinct cell states
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10274680/
https://www.ncbi.nlm.nih.gov/pubmed/37333365
http://dx.doi.org/10.1101/2023.06.03.543569
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