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Functional recreation of age-related CD8 T cells in young mice identifies drivers of aging- and human-specific tissue pathology

Mitigating effects of aging on human health remains elusive because aging impacts multiple systems simultaneously, and because experimental animals exhibit critical aging differences relative to humans. Separation of aging into discrete processes may identify targetable drivers of pathology, particu...

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Autores principales: Panwar, Akanksha, Jhun, Michelle, Rentsendorj, Altan, Mardiros, Armen, Cordner, Ryan, Birch, Kurtis, Yeager, Nicole, Duvall, Gretchen, Golchian, David, Koronyo-Hamaoui, Maya, Cohen, Robert M., Ley, Eric, Black, Keith L., Wheeler, Christopher J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7567339/
https://www.ncbi.nlm.nih.gov/pubmed/32910956
http://dx.doi.org/10.1016/j.mad.2020.111351
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author Panwar, Akanksha
Jhun, Michelle
Rentsendorj, Altan
Mardiros, Armen
Cordner, Ryan
Birch, Kurtis
Yeager, Nicole
Duvall, Gretchen
Golchian, David
Koronyo-Hamaoui, Maya
Cohen, Robert M.
Ley, Eric
Black, Keith L.
Wheeler, Christopher J.
author_facet Panwar, Akanksha
Jhun, Michelle
Rentsendorj, Altan
Mardiros, Armen
Cordner, Ryan
Birch, Kurtis
Yeager, Nicole
Duvall, Gretchen
Golchian, David
Koronyo-Hamaoui, Maya
Cohen, Robert M.
Ley, Eric
Black, Keith L.
Wheeler, Christopher J.
author_sort Panwar, Akanksha
collection PubMed
description Mitigating effects of aging on human health remains elusive because aging impacts multiple systems simultaneously, and because experimental animals exhibit critical aging differences relative to humans. Separation of aging into discrete processes may identify targetable drivers of pathology, particularly when applied to human-specific features. Gradual homeostatic expansion of CD8 T cells dominantly alters their function in aging humans but not in mice. Injecting T cells into athymic mice induces rapid homeostatic expansion, but its relevance to aging remains uncertain. We hypothesized that homeostatic expansion of T cells injected into T-deficient hosts models physiologically relevant CD8 T cell aging in young mice, and aimed to analyze age-related T cell phenotype and tissue pathology in such animals. Indeed, we found that such injection conferred uniform age-related phenotype, genotype, and function to mouse CD8 T cells, heightened age-associated tissue pathology in young athymic hosts, and humanized amyloidosis after brain injury in secondary wild-type recipients. This validates a model conferring a human-specific aging feature to mice that identifies targetable drivers of tissue pathology. Similar examination of independent aging features should promote systematic understanding of aging and identify additional targets to mitigate its effects on human health.
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spelling pubmed-75673392020-10-16 Functional recreation of age-related CD8 T cells in young mice identifies drivers of aging- and human-specific tissue pathology Panwar, Akanksha Jhun, Michelle Rentsendorj, Altan Mardiros, Armen Cordner, Ryan Birch, Kurtis Yeager, Nicole Duvall, Gretchen Golchian, David Koronyo-Hamaoui, Maya Cohen, Robert M. Ley, Eric Black, Keith L. Wheeler, Christopher J. Mech Ageing Dev Article Mitigating effects of aging on human health remains elusive because aging impacts multiple systems simultaneously, and because experimental animals exhibit critical aging differences relative to humans. Separation of aging into discrete processes may identify targetable drivers of pathology, particularly when applied to human-specific features. Gradual homeostatic expansion of CD8 T cells dominantly alters their function in aging humans but not in mice. Injecting T cells into athymic mice induces rapid homeostatic expansion, but its relevance to aging remains uncertain. We hypothesized that homeostatic expansion of T cells injected into T-deficient hosts models physiologically relevant CD8 T cell aging in young mice, and aimed to analyze age-related T cell phenotype and tissue pathology in such animals. Indeed, we found that such injection conferred uniform age-related phenotype, genotype, and function to mouse CD8 T cells, heightened age-associated tissue pathology in young athymic hosts, and humanized amyloidosis after brain injury in secondary wild-type recipients. This validates a model conferring a human-specific aging feature to mice that identifies targetable drivers of tissue pathology. Similar examination of independent aging features should promote systematic understanding of aging and identify additional targets to mitigate its effects on human health. 2020-09-08 2020-10 /pmc/articles/PMC7567339/ /pubmed/32910956 http://dx.doi.org/10.1016/j.mad.2020.111351 Text en This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Panwar, Akanksha
Jhun, Michelle
Rentsendorj, Altan
Mardiros, Armen
Cordner, Ryan
Birch, Kurtis
Yeager, Nicole
Duvall, Gretchen
Golchian, David
Koronyo-Hamaoui, Maya
Cohen, Robert M.
Ley, Eric
Black, Keith L.
Wheeler, Christopher J.
Functional recreation of age-related CD8 T cells in young mice identifies drivers of aging- and human-specific tissue pathology
title Functional recreation of age-related CD8 T cells in young mice identifies drivers of aging- and human-specific tissue pathology
title_full Functional recreation of age-related CD8 T cells in young mice identifies drivers of aging- and human-specific tissue pathology
title_fullStr Functional recreation of age-related CD8 T cells in young mice identifies drivers of aging- and human-specific tissue pathology
title_full_unstemmed Functional recreation of age-related CD8 T cells in young mice identifies drivers of aging- and human-specific tissue pathology
title_short Functional recreation of age-related CD8 T cells in young mice identifies drivers of aging- and human-specific tissue pathology
title_sort functional recreation of age-related cd8 t cells in young mice identifies drivers of aging- and human-specific tissue pathology
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7567339/
https://www.ncbi.nlm.nih.gov/pubmed/32910956
http://dx.doi.org/10.1016/j.mad.2020.111351
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