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Cthrc1 deficiency aggravates wound healing and promotes cardiac rupture after myocardial infarction via non-canonical WNT5A signaling pathway

Cardiac fibroblasts are crucial for scar formation and cardiac repair after myocardial infarction (MI). Collagen triple helix repeat containing 1 (CTHRC1), an extracellular matrix protein, is involved in the pathogenesis of vascular remodeling, bone formation, and tumor progression. However, the rol...

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Autores principales: Wang, Di, Zhang, Yaping, Ye, Tianbao, Zhang, Runlei, Zhang, Lili, Shi, Dongmei, Li, Taixi, Xia, Guofang, Niu, Kaifan, Zhao, Zhe, Chen, Yu, Pan, Weijun, Liu, Liang, Jin, Xian, Shen, Chengxing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10008688/
https://www.ncbi.nlm.nih.gov/pubmed/36923925
http://dx.doi.org/10.7150/ijbs.79260
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author Wang, Di
Zhang, Yaping
Ye, Tianbao
Zhang, Runlei
Zhang, Lili
Shi, Dongmei
Li, Taixi
Xia, Guofang
Niu, Kaifan
Zhao, Zhe
Chen, Yu
Pan, Weijun
Liu, Liang
Jin, Xian
Shen, Chengxing
author_facet Wang, Di
Zhang, Yaping
Ye, Tianbao
Zhang, Runlei
Zhang, Lili
Shi, Dongmei
Li, Taixi
Xia, Guofang
Niu, Kaifan
Zhao, Zhe
Chen, Yu
Pan, Weijun
Liu, Liang
Jin, Xian
Shen, Chengxing
author_sort Wang, Di
collection PubMed
description Cardiac fibroblasts are crucial for scar formation and cardiac repair after myocardial infarction (MI). Collagen triple helix repeat containing 1 (CTHRC1), an extracellular matrix protein, is involved in the pathogenesis of vascular remodeling, bone formation, and tumor progression. However, the role and underlying mechanism of CTHRC1 in post-MI wound repair are not fully clear. Bioinformatics analysis demonstrated CTHRC1 up-regulation in cardiac fibroblasts after ischemic cardiac injury. Serum levels of CTHRC1 were increased in MI mice and CTHRC1 expression was up-regulated in cardiac fibroblasts after MI. In vitro results showed that the induction of CTHRC1 expression in cardiac fibroblasts was mediated by canonical TGFβ1-Smad2/3 signaling axis. Moreover, CTHRC1 improved wound healing and boosted cardiac fibroblast activation in vitro. Cthrc1 deficiency aggravated cardiac function and reduced collagen deposition as well as increased mortality attributable to cardiac rupture after MI. Consistent with above phenotypes, reduced the levels of myocardial CD31, α-smooth muscle actin, collagen I, and collagen III was observed, whereas myocardial expression of matrix metalloproteinase 2 and matrix metalloproteinase 9 were increased in Cthrc1 knockout mice post-MI. Above effects could be partly reversed by rCTHRC1 protein or rWNT5A protein. Our study indicates that cardiac fibroblast-derived, canonical TGFβ1-Smad2/3-dependent CTHRC1 could improve wound repair and prevent cardiac rupture after MI via selectively activating non-canonical WNT5A-PCP signaling pathway.
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spelling pubmed-100086882023-03-14 Cthrc1 deficiency aggravates wound healing and promotes cardiac rupture after myocardial infarction via non-canonical WNT5A signaling pathway Wang, Di Zhang, Yaping Ye, Tianbao Zhang, Runlei Zhang, Lili Shi, Dongmei Li, Taixi Xia, Guofang Niu, Kaifan Zhao, Zhe Chen, Yu Pan, Weijun Liu, Liang Jin, Xian Shen, Chengxing Int J Biol Sci Research Paper Cardiac fibroblasts are crucial for scar formation and cardiac repair after myocardial infarction (MI). Collagen triple helix repeat containing 1 (CTHRC1), an extracellular matrix protein, is involved in the pathogenesis of vascular remodeling, bone formation, and tumor progression. However, the role and underlying mechanism of CTHRC1 in post-MI wound repair are not fully clear. Bioinformatics analysis demonstrated CTHRC1 up-regulation in cardiac fibroblasts after ischemic cardiac injury. Serum levels of CTHRC1 were increased in MI mice and CTHRC1 expression was up-regulated in cardiac fibroblasts after MI. In vitro results showed that the induction of CTHRC1 expression in cardiac fibroblasts was mediated by canonical TGFβ1-Smad2/3 signaling axis. Moreover, CTHRC1 improved wound healing and boosted cardiac fibroblast activation in vitro. Cthrc1 deficiency aggravated cardiac function and reduced collagen deposition as well as increased mortality attributable to cardiac rupture after MI. Consistent with above phenotypes, reduced the levels of myocardial CD31, α-smooth muscle actin, collagen I, and collagen III was observed, whereas myocardial expression of matrix metalloproteinase 2 and matrix metalloproteinase 9 were increased in Cthrc1 knockout mice post-MI. Above effects could be partly reversed by rCTHRC1 protein or rWNT5A protein. Our study indicates that cardiac fibroblast-derived, canonical TGFβ1-Smad2/3-dependent CTHRC1 could improve wound repair and prevent cardiac rupture after MI via selectively activating non-canonical WNT5A-PCP signaling pathway. Ivyspring International Publisher 2023-02-13 /pmc/articles/PMC10008688/ /pubmed/36923925 http://dx.doi.org/10.7150/ijbs.79260 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
Wang, Di
Zhang, Yaping
Ye, Tianbao
Zhang, Runlei
Zhang, Lili
Shi, Dongmei
Li, Taixi
Xia, Guofang
Niu, Kaifan
Zhao, Zhe
Chen, Yu
Pan, Weijun
Liu, Liang
Jin, Xian
Shen, Chengxing
Cthrc1 deficiency aggravates wound healing and promotes cardiac rupture after myocardial infarction via non-canonical WNT5A signaling pathway
title Cthrc1 deficiency aggravates wound healing and promotes cardiac rupture after myocardial infarction via non-canonical WNT5A signaling pathway
title_full Cthrc1 deficiency aggravates wound healing and promotes cardiac rupture after myocardial infarction via non-canonical WNT5A signaling pathway
title_fullStr Cthrc1 deficiency aggravates wound healing and promotes cardiac rupture after myocardial infarction via non-canonical WNT5A signaling pathway
title_full_unstemmed Cthrc1 deficiency aggravates wound healing and promotes cardiac rupture after myocardial infarction via non-canonical WNT5A signaling pathway
title_short Cthrc1 deficiency aggravates wound healing and promotes cardiac rupture after myocardial infarction via non-canonical WNT5A signaling pathway
title_sort cthrc1 deficiency aggravates wound healing and promotes cardiac rupture after myocardial infarction via non-canonical wnt5a signaling pathway
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10008688/
https://www.ncbi.nlm.nih.gov/pubmed/36923925
http://dx.doi.org/10.7150/ijbs.79260
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