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Meta-Analysis of Smooth Muscle Lineage Transcriptomes in Atherosclerosis and Their Relationships to In Vitro Models

BACKGROUND: Vascular smooth muscle cells (VSMC) exhibit phenotypic plasticity in atherosclerotic plaques, and among other approaches, has been modeled in vitro by cholesterol loading. METHODS: Meta-analysis of scRNA-seq data from VSMC lineage traced cells across five experiments of murine atheroscle...

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Autores principales: Conklin, Austin C., Nishi, Hitoo, Schlamp, Florencia, Örd, Tiit, Õunap, Kadri, Kaikkonen, Minna U., Fisher, Edward A., Romanoski, Casey E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8232871/
https://www.ncbi.nlm.nih.gov/pubmed/34178388
http://dx.doi.org/10.20900/immunometab20210022
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author Conklin, Austin C.
Nishi, Hitoo
Schlamp, Florencia
Örd, Tiit
Õunap, Kadri
Kaikkonen, Minna U.
Fisher, Edward A.
Romanoski, Casey E.
author_facet Conklin, Austin C.
Nishi, Hitoo
Schlamp, Florencia
Örd, Tiit
Õunap, Kadri
Kaikkonen, Minna U.
Fisher, Edward A.
Romanoski, Casey E.
author_sort Conklin, Austin C.
collection PubMed
description BACKGROUND: Vascular smooth muscle cells (VSMC) exhibit phenotypic plasticity in atherosclerotic plaques, and among other approaches, has been modeled in vitro by cholesterol loading. METHODS: Meta-analysis of scRNA-seq data from VSMC lineage traced cells across five experiments of murine atherosclerosis was performed. In vivo expression profiles were compared to three in vitro datasets of VSMCs loaded with cholesterol and three datasets of polarized macrophages. RESULTS: We identified 24 cell clusters in the meta-analysis of single cells from mouse atherosclerotic lesions with notable heterogeneity across studies, especially for macrophage populations. Trajectory analysis of VSMC lineage positive cells revealed several possible paths of state transitions with one traversing from contractile VSMC to macrophages by way of a proliferative cell cluster. Transcriptome comparisons between in vivo and in vitro states underscored that data from three in vitro cholesterol-treated VSMC experiments did not mirror cell state transitions observed in vivo. However, all in vitro macrophage profiles analyzed (M1, M2, and oxLDL) were more similar to in vivo profiles of macrophages than in vitro VSMCs were to in vivo profiles of VSMCs. oxLDL loaded macrophages showed the most similarity to in vivo states. In contrast to the in vitro data, comparison between mouse and human in vivo data showed many similarities. CONCLUSIONS: Identification of the sources of variation across single cell datasets in atherosclerosis will be an important step towards understanding VSMC fate transitions in vivo. Also, we conclude that cholesterol-loading in vitro is insufficient to model the VSMC cell state transitions observed in vivo, which underscores the need to develop better cell models. Mouse models, however, appear to reproduce a number of the features of VSMCs in human plaques.
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spelling pubmed-82328712021-06-25 Meta-Analysis of Smooth Muscle Lineage Transcriptomes in Atherosclerosis and Their Relationships to In Vitro Models Conklin, Austin C. Nishi, Hitoo Schlamp, Florencia Örd, Tiit Õunap, Kadri Kaikkonen, Minna U. Fisher, Edward A. Romanoski, Casey E. Immunometabolism Article BACKGROUND: Vascular smooth muscle cells (VSMC) exhibit phenotypic plasticity in atherosclerotic plaques, and among other approaches, has been modeled in vitro by cholesterol loading. METHODS: Meta-analysis of scRNA-seq data from VSMC lineage traced cells across five experiments of murine atherosclerosis was performed. In vivo expression profiles were compared to three in vitro datasets of VSMCs loaded with cholesterol and three datasets of polarized macrophages. RESULTS: We identified 24 cell clusters in the meta-analysis of single cells from mouse atherosclerotic lesions with notable heterogeneity across studies, especially for macrophage populations. Trajectory analysis of VSMC lineage positive cells revealed several possible paths of state transitions with one traversing from contractile VSMC to macrophages by way of a proliferative cell cluster. Transcriptome comparisons between in vivo and in vitro states underscored that data from three in vitro cholesterol-treated VSMC experiments did not mirror cell state transitions observed in vivo. However, all in vitro macrophage profiles analyzed (M1, M2, and oxLDL) were more similar to in vivo profiles of macrophages than in vitro VSMCs were to in vivo profiles of VSMCs. oxLDL loaded macrophages showed the most similarity to in vivo states. In contrast to the in vitro data, comparison between mouse and human in vivo data showed many similarities. CONCLUSIONS: Identification of the sources of variation across single cell datasets in atherosclerosis will be an important step towards understanding VSMC fate transitions in vivo. Also, we conclude that cholesterol-loading in vitro is insufficient to model the VSMC cell state transitions observed in vivo, which underscores the need to develop better cell models. Mouse models, however, appear to reproduce a number of the features of VSMCs in human plaques. 2021-05-21 2021 /pmc/articles/PMC8232871/ /pubmed/34178388 http://dx.doi.org/10.20900/immunometab20210022 Text en https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms and conditions of Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Conklin, Austin C.
Nishi, Hitoo
Schlamp, Florencia
Örd, Tiit
Õunap, Kadri
Kaikkonen, Minna U.
Fisher, Edward A.
Romanoski, Casey E.
Meta-Analysis of Smooth Muscle Lineage Transcriptomes in Atherosclerosis and Their Relationships to In Vitro Models
title Meta-Analysis of Smooth Muscle Lineage Transcriptomes in Atherosclerosis and Their Relationships to In Vitro Models
title_full Meta-Analysis of Smooth Muscle Lineage Transcriptomes in Atherosclerosis and Their Relationships to In Vitro Models
title_fullStr Meta-Analysis of Smooth Muscle Lineage Transcriptomes in Atherosclerosis and Their Relationships to In Vitro Models
title_full_unstemmed Meta-Analysis of Smooth Muscle Lineage Transcriptomes in Atherosclerosis and Their Relationships to In Vitro Models
title_short Meta-Analysis of Smooth Muscle Lineage Transcriptomes in Atherosclerosis and Their Relationships to In Vitro Models
title_sort meta-analysis of smooth muscle lineage transcriptomes in atherosclerosis and their relationships to in vitro models
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8232871/
https://www.ncbi.nlm.nih.gov/pubmed/34178388
http://dx.doi.org/10.20900/immunometab20210022
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