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Dysregulation of interaction between LOX(high) fibroblast and smooth muscle cells contributes to the pathogenesis of aortic dissection

Rationale: While cell-cell interaction plays a critical role in physiology and disease, a comprehensive understanding of its dynamics in vascular homeostasis and diseases is yet absent. Methods: Here, by use of single-cell RNA-sequencing and multi-color staining, we delineate the cellular compositio...

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Autores principales: Chen, Yinan, Zhang, Tao, Yao, Fang, Gao, Xiang, Li, Dandan, Fu, Shufang, Mao, Lin, Liu, Fei, Zhang, Xuelin, Xu, Yongle, Deng, Jianqing, Li, Weihao, Fan, Guangpu, Xiao, Cangsong, Chen, Yu, Wang, Li, Guo, Wei, Zhou, Bingying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8692905/
https://www.ncbi.nlm.nih.gov/pubmed/34976220
http://dx.doi.org/10.7150/thno.66059
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author Chen, Yinan
Zhang, Tao
Yao, Fang
Gao, Xiang
Li, Dandan
Fu, Shufang
Mao, Lin
Liu, Fei
Zhang, Xuelin
Xu, Yongle
Deng, Jianqing
Li, Weihao
Fan, Guangpu
Xiao, Cangsong
Chen, Yu
Wang, Li
Guo, Wei
Zhou, Bingying
author_facet Chen, Yinan
Zhang, Tao
Yao, Fang
Gao, Xiang
Li, Dandan
Fu, Shufang
Mao, Lin
Liu, Fei
Zhang, Xuelin
Xu, Yongle
Deng, Jianqing
Li, Weihao
Fan, Guangpu
Xiao, Cangsong
Chen, Yu
Wang, Li
Guo, Wei
Zhou, Bingying
author_sort Chen, Yinan
collection PubMed
description Rationale: While cell-cell interaction plays a critical role in physiology and disease, a comprehensive understanding of its dynamics in vascular homeostasis and diseases is yet absent. Methods: Here, by use of single-cell RNA-sequencing and multi-color staining, we delineate the cellular composition and spatial characterization of human aorta with or without aortic dissection (AD). Results: Scrutinization of cell subtype alterations revealed significantly changed fibroblast (FB)-smooth muscle cell (SMC) interactions in AD. Of these cellular interactions, LOX(high) fibroblast (fibroblast subtype 2, FB2) in diseased state exerted the most pronounced effects on pathological deterioration of SMCs in AD. In addition, pharmacologically targeting the BMP (bone morphogenetic protein) signaling pathway effectively suppressed FB2 state transition and reduced AD incidence in mice. Finally, COL5A1 (collagen type V alpha 1 chain), one of the secreted proteins released from FB2, was significantly higher in the plasma of AD patients than in control patients, suggesting its potential use as a biomarker for AD diagnosis. Conclusions: Our work not only identified a pivotal role of a specific FB subtype in AD progression, but also shed light on cell interaction dynamics in vascular diseases.
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spelling pubmed-86929052022-01-01 Dysregulation of interaction between LOX(high) fibroblast and smooth muscle cells contributes to the pathogenesis of aortic dissection Chen, Yinan Zhang, Tao Yao, Fang Gao, Xiang Li, Dandan Fu, Shufang Mao, Lin Liu, Fei Zhang, Xuelin Xu, Yongle Deng, Jianqing Li, Weihao Fan, Guangpu Xiao, Cangsong Chen, Yu Wang, Li Guo, Wei Zhou, Bingying Theranostics Research Paper Rationale: While cell-cell interaction plays a critical role in physiology and disease, a comprehensive understanding of its dynamics in vascular homeostasis and diseases is yet absent. Methods: Here, by use of single-cell RNA-sequencing and multi-color staining, we delineate the cellular composition and spatial characterization of human aorta with or without aortic dissection (AD). Results: Scrutinization of cell subtype alterations revealed significantly changed fibroblast (FB)-smooth muscle cell (SMC) interactions in AD. Of these cellular interactions, LOX(high) fibroblast (fibroblast subtype 2, FB2) in diseased state exerted the most pronounced effects on pathological deterioration of SMCs in AD. In addition, pharmacologically targeting the BMP (bone morphogenetic protein) signaling pathway effectively suppressed FB2 state transition and reduced AD incidence in mice. Finally, COL5A1 (collagen type V alpha 1 chain), one of the secreted proteins released from FB2, was significantly higher in the plasma of AD patients than in control patients, suggesting its potential use as a biomarker for AD diagnosis. Conclusions: Our work not only identified a pivotal role of a specific FB subtype in AD progression, but also shed light on cell interaction dynamics in vascular diseases. Ivyspring International Publisher 2022-01-01 /pmc/articles/PMC8692905/ /pubmed/34976220 http://dx.doi.org/10.7150/thno.66059 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Chen, Yinan
Zhang, Tao
Yao, Fang
Gao, Xiang
Li, Dandan
Fu, Shufang
Mao, Lin
Liu, Fei
Zhang, Xuelin
Xu, Yongle
Deng, Jianqing
Li, Weihao
Fan, Guangpu
Xiao, Cangsong
Chen, Yu
Wang, Li
Guo, Wei
Zhou, Bingying
Dysregulation of interaction between LOX(high) fibroblast and smooth muscle cells contributes to the pathogenesis of aortic dissection
title Dysregulation of interaction between LOX(high) fibroblast and smooth muscle cells contributes to the pathogenesis of aortic dissection
title_full Dysregulation of interaction between LOX(high) fibroblast and smooth muscle cells contributes to the pathogenesis of aortic dissection
title_fullStr Dysregulation of interaction between LOX(high) fibroblast and smooth muscle cells contributes to the pathogenesis of aortic dissection
title_full_unstemmed Dysregulation of interaction between LOX(high) fibroblast and smooth muscle cells contributes to the pathogenesis of aortic dissection
title_short Dysregulation of interaction between LOX(high) fibroblast and smooth muscle cells contributes to the pathogenesis of aortic dissection
title_sort dysregulation of interaction between lox(high) fibroblast and smooth muscle cells contributes to the pathogenesis of aortic dissection
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8692905/
https://www.ncbi.nlm.nih.gov/pubmed/34976220
http://dx.doi.org/10.7150/thno.66059
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