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Single-Cell Transcriptomic Census of Endothelial Changes Induced by Matrix Stiffness and the Association with Atherosclerosis

Vascular endothelial cell (EC) plasticity plays a critical role in the progression of atherosclerosis by giving rise to mesenchymal phenotypes in the plaque lesion. Despite the evidence for arterial stiffening as a major contributor to atherosclerosis, the complex interplay among atherogenic stimuli...

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Autores principales: Zamani, Maedeh, Cheng, Yu-Hao, Charbonier, Frank, Gupta, Vivek Kumar, Mayer, Aaron T., Trevino, Alexandro E., Quertermous, Thomas, Chaudhuri, Ovijit, Cahan, Patrick, Huang, Ngan F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9937733/
https://www.ncbi.nlm.nih.gov/pubmed/36816792
http://dx.doi.org/10.1002/adfm.202203069
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author Zamani, Maedeh
Cheng, Yu-Hao
Charbonier, Frank
Gupta, Vivek Kumar
Mayer, Aaron T.
Trevino, Alexandro E.
Quertermous, Thomas
Chaudhuri, Ovijit
Cahan, Patrick
Huang, Ngan F.
author_facet Zamani, Maedeh
Cheng, Yu-Hao
Charbonier, Frank
Gupta, Vivek Kumar
Mayer, Aaron T.
Trevino, Alexandro E.
Quertermous, Thomas
Chaudhuri, Ovijit
Cahan, Patrick
Huang, Ngan F.
author_sort Zamani, Maedeh
collection PubMed
description Vascular endothelial cell (EC) plasticity plays a critical role in the progression of atherosclerosis by giving rise to mesenchymal phenotypes in the plaque lesion. Despite the evidence for arterial stiffening as a major contributor to atherosclerosis, the complex interplay among atherogenic stimuli in vivo has hindered attempts to determine the effects of extracellular matrix (ECM) stiffness on endothelial-mesenchymal transition (EndMT). To study the regulatory effects of ECM stiffness on EndMT, an in vitro model is developed in which human coronary artery ECs are cultured on physiological or pathological stiffness substrates. Leveraging single-cell RNA sequencing, cell clusters with mesenchymal transcriptional features are identified to be more prevalent on pathological substrates than physiological substrates. Trajectory inference analyses reveal a novel mesenchymal-to-endothelial reverse transition, which is blocked by pathological stiffness substrates, in addition to the expected EndMT trajectory. ECs pushed to a mesenchymal character by pathological stiffness substrates are enriched in transcriptional signatures of atherosclerotic ECs from human and murine plaques. This study characterizes at single-cell resolution the transcriptional programs that underpin EC plasticity in both physiological or pathological milieus, and thus serves as a valuable resource for more precisely defining EndMT and the transcriptional programs contributing to atherosclerosis.
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spelling pubmed-99377332023-11-17 Single-Cell Transcriptomic Census of Endothelial Changes Induced by Matrix Stiffness and the Association with Atherosclerosis Zamani, Maedeh Cheng, Yu-Hao Charbonier, Frank Gupta, Vivek Kumar Mayer, Aaron T. Trevino, Alexandro E. Quertermous, Thomas Chaudhuri, Ovijit Cahan, Patrick Huang, Ngan F. Adv Funct Mater Article Vascular endothelial cell (EC) plasticity plays a critical role in the progression of atherosclerosis by giving rise to mesenchymal phenotypes in the plaque lesion. Despite the evidence for arterial stiffening as a major contributor to atherosclerosis, the complex interplay among atherogenic stimuli in vivo has hindered attempts to determine the effects of extracellular matrix (ECM) stiffness on endothelial-mesenchymal transition (EndMT). To study the regulatory effects of ECM stiffness on EndMT, an in vitro model is developed in which human coronary artery ECs are cultured on physiological or pathological stiffness substrates. Leveraging single-cell RNA sequencing, cell clusters with mesenchymal transcriptional features are identified to be more prevalent on pathological substrates than physiological substrates. Trajectory inference analyses reveal a novel mesenchymal-to-endothelial reverse transition, which is blocked by pathological stiffness substrates, in addition to the expected EndMT trajectory. ECs pushed to a mesenchymal character by pathological stiffness substrates are enriched in transcriptional signatures of atherosclerotic ECs from human and murine plaques. This study characterizes at single-cell resolution the transcriptional programs that underpin EC plasticity in both physiological or pathological milieus, and thus serves as a valuable resource for more precisely defining EndMT and the transcriptional programs contributing to atherosclerosis. 2022-11-17 2022-09-12 /pmc/articles/PMC9937733/ /pubmed/36816792 http://dx.doi.org/10.1002/adfm.202203069 Text en https://creativecommons.org/licenses/by/4.0/This article has been contributed to by U.S. Government employees and their work is in the public domain in the USA. This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Zamani, Maedeh
Cheng, Yu-Hao
Charbonier, Frank
Gupta, Vivek Kumar
Mayer, Aaron T.
Trevino, Alexandro E.
Quertermous, Thomas
Chaudhuri, Ovijit
Cahan, Patrick
Huang, Ngan F.
Single-Cell Transcriptomic Census of Endothelial Changes Induced by Matrix Stiffness and the Association with Atherosclerosis
title Single-Cell Transcriptomic Census of Endothelial Changes Induced by Matrix Stiffness and the Association with Atherosclerosis
title_full Single-Cell Transcriptomic Census of Endothelial Changes Induced by Matrix Stiffness and the Association with Atherosclerosis
title_fullStr Single-Cell Transcriptomic Census of Endothelial Changes Induced by Matrix Stiffness and the Association with Atherosclerosis
title_full_unstemmed Single-Cell Transcriptomic Census of Endothelial Changes Induced by Matrix Stiffness and the Association with Atherosclerosis
title_short Single-Cell Transcriptomic Census of Endothelial Changes Induced by Matrix Stiffness and the Association with Atherosclerosis
title_sort single-cell transcriptomic census of endothelial changes induced by matrix stiffness and the association with atherosclerosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9937733/
https://www.ncbi.nlm.nih.gov/pubmed/36816792
http://dx.doi.org/10.1002/adfm.202203069
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