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Single-Cell RNA-Seq Reveals a Population of Smooth Muscle Cells Responsible for Atherogenesis

Understanding the regional propensity differences of atherosclerosis (AS) development is hindered by the lack of animal models suitable for the study of the disease process. In this paper, we used 3S-ASCVD dogs, an ideal large animal human-like models for AS, to interrogate the heterogeneity of AS-p...

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Autores principales: Shi, Xiaofeng, Zhu, Shangming, Liu, Meijing, Stone, Sara Saymuah, Rong, Yao, Mao, Ke, Xu, Xiaopeng, Ma, Chao, Jiang, Zhuoyuan, Zha, Yan, Yan, Chun, Yu, Xiaofan, Wu, Di, Liu, Guiyou, Mi, Jidong, Zhao, Jianping, Li, Yuan, Ding, Yuchuan, Wang, Xiaogang, Zhang, Yong-Biao, Ji, Xunming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: JKL International LLC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9662277/
https://www.ncbi.nlm.nih.gov/pubmed/36465170
http://dx.doi.org/10.14336/AD.2022.0313
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author Shi, Xiaofeng
Zhu, Shangming
Liu, Meijing
Stone, Sara Saymuah
Rong, Yao
Mao, Ke
Xu, Xiaopeng
Ma, Chao
Jiang, Zhuoyuan
Zha, Yan
Yan, Chun
Yu, Xiaofan
Wu, Di
Liu, Guiyou
Mi, Jidong
Zhao, Jianping
Li, Yuan
Ding, Yuchuan
Wang, Xiaogang
Zhang, Yong-Biao
Ji, Xunming
author_facet Shi, Xiaofeng
Zhu, Shangming
Liu, Meijing
Stone, Sara Saymuah
Rong, Yao
Mao, Ke
Xu, Xiaopeng
Ma, Chao
Jiang, Zhuoyuan
Zha, Yan
Yan, Chun
Yu, Xiaofan
Wu, Di
Liu, Guiyou
Mi, Jidong
Zhao, Jianping
Li, Yuan
Ding, Yuchuan
Wang, Xiaogang
Zhang, Yong-Biao
Ji, Xunming
author_sort Shi, Xiaofeng
collection PubMed
description Understanding the regional propensity differences of atherosclerosis (AS) development is hindered by the lack of animal models suitable for the study of the disease process. In this paper, we used 3S-ASCVD dogs, an ideal large animal human-like models for AS, to interrogate the heterogeneity of AS-prone and AS-resistant arteries; and at the single-cell level, identify the dominant cells involved in AS development. Here we present data from 3S-ASCVD dogs which reliably mimic human AS pathophysiology, predilection for lesion sites, and endpoint events. Our analysis combined bulk RNA-seq with single-cell RNA-seq to depict the transcriptomic profiles and cellular atlas of AS-prone and AS-resistant arteries in 3S-ASCVD dogs. Our results revealed the integral role of smooth muscle cells (SMCs) in regional propensity for AS. Notably, TNC(+) SMCs were major contributors to AS development in 3S-ASCVD dogs, indicating enhanced extracellular matrix remodeling and transition to myofibroblasts during the AS process. Moreover, TNC(+) SMCs were also present in human AS-prone carotid plaques, suggesting a potential origin of myofibroblasts and supporting the relevance of our findings. Our study provides a promising large animal model for pre-clinical studies of ASCVD and add novel insights surrounding the regional propensity of AS development in humans, which may lead to interventions that delay or prevent lesion progression and adverse clinical events.
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spelling pubmed-96622772022-12-01 Single-Cell RNA-Seq Reveals a Population of Smooth Muscle Cells Responsible for Atherogenesis Shi, Xiaofeng Zhu, Shangming Liu, Meijing Stone, Sara Saymuah Rong, Yao Mao, Ke Xu, Xiaopeng Ma, Chao Jiang, Zhuoyuan Zha, Yan Yan, Chun Yu, Xiaofan Wu, Di Liu, Guiyou Mi, Jidong Zhao, Jianping Li, Yuan Ding, Yuchuan Wang, Xiaogang Zhang, Yong-Biao Ji, Xunming Aging Dis Original Artcile Understanding the regional propensity differences of atherosclerosis (AS) development is hindered by the lack of animal models suitable for the study of the disease process. In this paper, we used 3S-ASCVD dogs, an ideal large animal human-like models for AS, to interrogate the heterogeneity of AS-prone and AS-resistant arteries; and at the single-cell level, identify the dominant cells involved in AS development. Here we present data from 3S-ASCVD dogs which reliably mimic human AS pathophysiology, predilection for lesion sites, and endpoint events. Our analysis combined bulk RNA-seq with single-cell RNA-seq to depict the transcriptomic profiles and cellular atlas of AS-prone and AS-resistant arteries in 3S-ASCVD dogs. Our results revealed the integral role of smooth muscle cells (SMCs) in regional propensity for AS. Notably, TNC(+) SMCs were major contributors to AS development in 3S-ASCVD dogs, indicating enhanced extracellular matrix remodeling and transition to myofibroblasts during the AS process. Moreover, TNC(+) SMCs were also present in human AS-prone carotid plaques, suggesting a potential origin of myofibroblasts and supporting the relevance of our findings. Our study provides a promising large animal model for pre-clinical studies of ASCVD and add novel insights surrounding the regional propensity of AS development in humans, which may lead to interventions that delay or prevent lesion progression and adverse clinical events. JKL International LLC 2022-12-01 /pmc/articles/PMC9662277/ /pubmed/36465170 http://dx.doi.org/10.14336/AD.2022.0313 Text en copyright: © 2022 Shi et al. https://creativecommons.org/licenses/by/2.0/this is an open access article distributed under the terms of the creative commons attribution license, which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Original Artcile
Shi, Xiaofeng
Zhu, Shangming
Liu, Meijing
Stone, Sara Saymuah
Rong, Yao
Mao, Ke
Xu, Xiaopeng
Ma, Chao
Jiang, Zhuoyuan
Zha, Yan
Yan, Chun
Yu, Xiaofan
Wu, Di
Liu, Guiyou
Mi, Jidong
Zhao, Jianping
Li, Yuan
Ding, Yuchuan
Wang, Xiaogang
Zhang, Yong-Biao
Ji, Xunming
Single-Cell RNA-Seq Reveals a Population of Smooth Muscle Cells Responsible for Atherogenesis
title Single-Cell RNA-Seq Reveals a Population of Smooth Muscle Cells Responsible for Atherogenesis
title_full Single-Cell RNA-Seq Reveals a Population of Smooth Muscle Cells Responsible for Atherogenesis
title_fullStr Single-Cell RNA-Seq Reveals a Population of Smooth Muscle Cells Responsible for Atherogenesis
title_full_unstemmed Single-Cell RNA-Seq Reveals a Population of Smooth Muscle Cells Responsible for Atherogenesis
title_short Single-Cell RNA-Seq Reveals a Population of Smooth Muscle Cells Responsible for Atherogenesis
title_sort single-cell rna-seq reveals a population of smooth muscle cells responsible for atherogenesis
topic Original Artcile
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9662277/
https://www.ncbi.nlm.nih.gov/pubmed/36465170
http://dx.doi.org/10.14336/AD.2022.0313
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