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Single-cell RNA sequencing and binary hierarchical clustering define lung interstitial macrophage heterogeneity in response to hypoxia

Few studies have examined lung interstitial macrophage (IM) molecular phenotypes after being exposed to hypoxia in vivo at the single-cell level, even though macrophages contribute to hypoxic pulmonary hypertension (PH). We aimed to determine IM diversity and its association with hypoxia-induced PH....

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Autores principales: Campbell, Nzali V., Mickael, Claudia, Kumar, Sushil, Zhang, Hui, Campbell, Ian L., Gillen, Austin E., Trentin, Caio O., Diener, Katrina, Gao, Bifeng, Kheyfets, Vitaly O., Gu, Sue, Kumar, Rahul, Phang, Tzu, Brown, R. Dale, Graham, Brian B., Stenmark, Kurt R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Physiological Society 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9273277/
https://www.ncbi.nlm.nih.gov/pubmed/35608266
http://dx.doi.org/10.1152/ajplung.00104.2022
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author Campbell, Nzali V.
Mickael, Claudia
Kumar, Sushil
Zhang, Hui
Campbell, Ian L.
Gillen, Austin E.
Trentin, Caio O.
Diener, Katrina
Gao, Bifeng
Kheyfets, Vitaly O.
Gu, Sue
Kumar, Rahul
Phang, Tzu
Brown, R. Dale
Graham, Brian B.
Stenmark, Kurt R.
author_facet Campbell, Nzali V.
Mickael, Claudia
Kumar, Sushil
Zhang, Hui
Campbell, Ian L.
Gillen, Austin E.
Trentin, Caio O.
Diener, Katrina
Gao, Bifeng
Kheyfets, Vitaly O.
Gu, Sue
Kumar, Rahul
Phang, Tzu
Brown, R. Dale
Graham, Brian B.
Stenmark, Kurt R.
author_sort Campbell, Nzali V.
collection PubMed
description Few studies have examined lung interstitial macrophage (IM) molecular phenotypes after being exposed to hypoxia in vivo at the single-cell level, even though macrophages contribute to hypoxic pulmonary hypertension (PH). We aimed to determine IM diversity and its association with hypoxia-induced PH. We hypothesized that integrating single-cell RNA sequencing (scRNAseq) and binary hierarchal clustering (BHC) could resolve IM heterogeneity under normal homeostatic conditions and changes induced by hypoxia exposure. Cx3cr1(GFP/+) reporter mice were exposed to normoxic conditions (∼21% [Formula: see text]) or exposed to 1 day (D1) or 7 days (D7) of hypoxia (∼10% [Formula: see text]). We used flow cytometry to isolate Cx3cr1(+) IMs and the 10X Genomics platform for scRNAseq, Cell Ranger, Seurat, ClusterMap, monocle, ingenuity pathway analysis, and Fisher’s exact test (q value < 0.05) for functional investigations. n = 374 (normoxia), n = 2,526 (D1), and n = 1,211 (D7) IMs were included in the analyses. We identified three normoxia-related cell types, five hypoxia-associated cell types that emerged at D1, and three that appeared at D7. We describe the existence of a putative resident trained innate IM, which is present in normoxia, transiently depleted at D1, and recovered after 7 days of sustained hypoxia. We also define a rare putative pathogenic population associated with transcripts implicated in PH development that emerges at D7. In closing, we describe the successful integration of BHC with scRNAseq to determine IM heterogeneity and its association with PH. These results shed light on how resident-trained innate IMs become more heterogeneous but ultimately accustomed to hypoxia.
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spelling pubmed-92732772022-07-27 Single-cell RNA sequencing and binary hierarchical clustering define lung interstitial macrophage heterogeneity in response to hypoxia Campbell, Nzali V. Mickael, Claudia Kumar, Sushil Zhang, Hui Campbell, Ian L. Gillen, Austin E. Trentin, Caio O. Diener, Katrina Gao, Bifeng Kheyfets, Vitaly O. Gu, Sue Kumar, Rahul Phang, Tzu Brown, R. Dale Graham, Brian B. Stenmark, Kurt R. Am J Physiol Lung Cell Mol Physiol Rapid Report Few studies have examined lung interstitial macrophage (IM) molecular phenotypes after being exposed to hypoxia in vivo at the single-cell level, even though macrophages contribute to hypoxic pulmonary hypertension (PH). We aimed to determine IM diversity and its association with hypoxia-induced PH. We hypothesized that integrating single-cell RNA sequencing (scRNAseq) and binary hierarchal clustering (BHC) could resolve IM heterogeneity under normal homeostatic conditions and changes induced by hypoxia exposure. Cx3cr1(GFP/+) reporter mice were exposed to normoxic conditions (∼21% [Formula: see text]) or exposed to 1 day (D1) or 7 days (D7) of hypoxia (∼10% [Formula: see text]). We used flow cytometry to isolate Cx3cr1(+) IMs and the 10X Genomics platform for scRNAseq, Cell Ranger, Seurat, ClusterMap, monocle, ingenuity pathway analysis, and Fisher’s exact test (q value < 0.05) for functional investigations. n = 374 (normoxia), n = 2,526 (D1), and n = 1,211 (D7) IMs were included in the analyses. We identified three normoxia-related cell types, five hypoxia-associated cell types that emerged at D1, and three that appeared at D7. We describe the existence of a putative resident trained innate IM, which is present in normoxia, transiently depleted at D1, and recovered after 7 days of sustained hypoxia. We also define a rare putative pathogenic population associated with transcripts implicated in PH development that emerges at D7. In closing, we describe the successful integration of BHC with scRNAseq to determine IM heterogeneity and its association with PH. These results shed light on how resident-trained innate IMs become more heterogeneous but ultimately accustomed to hypoxia. American Physiological Society 2022-07-01 2022-05-24 /pmc/articles/PMC9273277/ /pubmed/35608266 http://dx.doi.org/10.1152/ajplung.00104.2022 Text en Copyright © 2022 The Authors https://creativecommons.org/licenses/by/4.0/Licensed under Creative Commons Attribution CC-BY 4.0 (https://creativecommons.org/licenses/by/4.0/) . Published by the American Physiological Society.
spellingShingle Rapid Report
Campbell, Nzali V.
Mickael, Claudia
Kumar, Sushil
Zhang, Hui
Campbell, Ian L.
Gillen, Austin E.
Trentin, Caio O.
Diener, Katrina
Gao, Bifeng
Kheyfets, Vitaly O.
Gu, Sue
Kumar, Rahul
Phang, Tzu
Brown, R. Dale
Graham, Brian B.
Stenmark, Kurt R.
Single-cell RNA sequencing and binary hierarchical clustering define lung interstitial macrophage heterogeneity in response to hypoxia
title Single-cell RNA sequencing and binary hierarchical clustering define lung interstitial macrophage heterogeneity in response to hypoxia
title_full Single-cell RNA sequencing and binary hierarchical clustering define lung interstitial macrophage heterogeneity in response to hypoxia
title_fullStr Single-cell RNA sequencing and binary hierarchical clustering define lung interstitial macrophage heterogeneity in response to hypoxia
title_full_unstemmed Single-cell RNA sequencing and binary hierarchical clustering define lung interstitial macrophage heterogeneity in response to hypoxia
title_short Single-cell RNA sequencing and binary hierarchical clustering define lung interstitial macrophage heterogeneity in response to hypoxia
title_sort single-cell rna sequencing and binary hierarchical clustering define lung interstitial macrophage heterogeneity in response to hypoxia
topic Rapid Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9273277/
https://www.ncbi.nlm.nih.gov/pubmed/35608266
http://dx.doi.org/10.1152/ajplung.00104.2022
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