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Single-cell analysis of skeletal muscle macrophages reveals age-associated functional subpopulations

Tissue-resident macrophages represent a group of highly responsive innate immune cells that acquire diverse functions by polarizing toward distinct subpopulations. The subpopulations of macrophages that reside in skeletal muscle (SKM) and their changes during aging are poorly characterized. By singl...

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Autores principales: Krasniewski, Linda K, Chakraborty, Papiya, Cui, Chang-Yi, Mazan-Mamczarz, Krystyna, Dunn, Christopher, Piao, Yulan, Fan, Jinshui, Shi, Changyou, Wallace, Tonya, Nguyen, Cuong, Rathbun, Isabelle A, Munk, Rachel, Tsitsipatis, Dimitrios, De, Supriyo, Sen, Payel, Ferrucci, Luigi, Gorospe, Myriam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9629833/
https://www.ncbi.nlm.nih.gov/pubmed/36259488
http://dx.doi.org/10.7554/eLife.77974
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author Krasniewski, Linda K
Chakraborty, Papiya
Cui, Chang-Yi
Mazan-Mamczarz, Krystyna
Dunn, Christopher
Piao, Yulan
Fan, Jinshui
Shi, Changyou
Wallace, Tonya
Nguyen, Cuong
Rathbun, Isabelle A
Munk, Rachel
Tsitsipatis, Dimitrios
De, Supriyo
Sen, Payel
Ferrucci, Luigi
Gorospe, Myriam
author_facet Krasniewski, Linda K
Chakraborty, Papiya
Cui, Chang-Yi
Mazan-Mamczarz, Krystyna
Dunn, Christopher
Piao, Yulan
Fan, Jinshui
Shi, Changyou
Wallace, Tonya
Nguyen, Cuong
Rathbun, Isabelle A
Munk, Rachel
Tsitsipatis, Dimitrios
De, Supriyo
Sen, Payel
Ferrucci, Luigi
Gorospe, Myriam
author_sort Krasniewski, Linda K
collection PubMed
description Tissue-resident macrophages represent a group of highly responsive innate immune cells that acquire diverse functions by polarizing toward distinct subpopulations. The subpopulations of macrophages that reside in skeletal muscle (SKM) and their changes during aging are poorly characterized. By single-cell transcriptomic analysis with unsupervised clustering, we found 11 distinct macrophage clusters in male mouse SKM with enriched gene expression programs linked to reparative, proinflammatory, phagocytic, proliferative, and senescence-associated functions. Using a complementary classification, membrane markers LYVE1 and MHCII identified four macrophage subgroups: LYVE1−/MHCII(hi) (M1-like, classically activated), LYVE1+/MHCII(lo) (M2-like, alternatively activated), and two new subgroups, LYVE1+/MHCII(hi) and LYVE1−/MHCII(lo). Notably, one new subgroup, LYVE1+/MHCII(hi), had traits of both M2 and M1 macrophages, while the other new subgroup, LYVE1−/MHCII(lo), displayed strong phagocytic capacity. Flow cytometric analysis validated the presence of the four macrophage subgroups in SKM and found that LYVE1− macrophages were more abundant than LYVE1+ macrophages in old SKM. A striking increase in proinflammatory markers (S100a8 and S100a9 mRNAs) and senescence-related markers (Gpnmb and Spp1 mRNAs) was evident in macrophage clusters from older mice. In sum, we have identified dynamically polarized SKM macrophages and propose that specific macrophage subpopulations contribute to the proinflammatory and senescent traits of old SKM.
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spelling pubmed-96298332022-11-03 Single-cell analysis of skeletal muscle macrophages reveals age-associated functional subpopulations Krasniewski, Linda K Chakraborty, Papiya Cui, Chang-Yi Mazan-Mamczarz, Krystyna Dunn, Christopher Piao, Yulan Fan, Jinshui Shi, Changyou Wallace, Tonya Nguyen, Cuong Rathbun, Isabelle A Munk, Rachel Tsitsipatis, Dimitrios De, Supriyo Sen, Payel Ferrucci, Luigi Gorospe, Myriam eLife Cell Biology Tissue-resident macrophages represent a group of highly responsive innate immune cells that acquire diverse functions by polarizing toward distinct subpopulations. The subpopulations of macrophages that reside in skeletal muscle (SKM) and their changes during aging are poorly characterized. By single-cell transcriptomic analysis with unsupervised clustering, we found 11 distinct macrophage clusters in male mouse SKM with enriched gene expression programs linked to reparative, proinflammatory, phagocytic, proliferative, and senescence-associated functions. Using a complementary classification, membrane markers LYVE1 and MHCII identified four macrophage subgroups: LYVE1−/MHCII(hi) (M1-like, classically activated), LYVE1+/MHCII(lo) (M2-like, alternatively activated), and two new subgroups, LYVE1+/MHCII(hi) and LYVE1−/MHCII(lo). Notably, one new subgroup, LYVE1+/MHCII(hi), had traits of both M2 and M1 macrophages, while the other new subgroup, LYVE1−/MHCII(lo), displayed strong phagocytic capacity. Flow cytometric analysis validated the presence of the four macrophage subgroups in SKM and found that LYVE1− macrophages were more abundant than LYVE1+ macrophages in old SKM. A striking increase in proinflammatory markers (S100a8 and S100a9 mRNAs) and senescence-related markers (Gpnmb and Spp1 mRNAs) was evident in macrophage clusters from older mice. In sum, we have identified dynamically polarized SKM macrophages and propose that specific macrophage subpopulations contribute to the proinflammatory and senescent traits of old SKM. eLife Sciences Publications, Ltd 2022-10-19 /pmc/articles/PMC9629833/ /pubmed/36259488 http://dx.doi.org/10.7554/eLife.77974 Text en https://creativecommons.org/publicdomain/zero/1.0/This is an open-access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 public domain dedication (https://creativecommons.org/publicdomain/zero/1.0/) .
spellingShingle Cell Biology
Krasniewski, Linda K
Chakraborty, Papiya
Cui, Chang-Yi
Mazan-Mamczarz, Krystyna
Dunn, Christopher
Piao, Yulan
Fan, Jinshui
Shi, Changyou
Wallace, Tonya
Nguyen, Cuong
Rathbun, Isabelle A
Munk, Rachel
Tsitsipatis, Dimitrios
De, Supriyo
Sen, Payel
Ferrucci, Luigi
Gorospe, Myriam
Single-cell analysis of skeletal muscle macrophages reveals age-associated functional subpopulations
title Single-cell analysis of skeletal muscle macrophages reveals age-associated functional subpopulations
title_full Single-cell analysis of skeletal muscle macrophages reveals age-associated functional subpopulations
title_fullStr Single-cell analysis of skeletal muscle macrophages reveals age-associated functional subpopulations
title_full_unstemmed Single-cell analysis of skeletal muscle macrophages reveals age-associated functional subpopulations
title_short Single-cell analysis of skeletal muscle macrophages reveals age-associated functional subpopulations
title_sort single-cell analysis of skeletal muscle macrophages reveals age-associated functional subpopulations
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9629833/
https://www.ncbi.nlm.nih.gov/pubmed/36259488
http://dx.doi.org/10.7554/eLife.77974
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