αv integrins on mesenchymal cells regulate skeletal and cardiac muscle fibrosis

The mechanisms underlying tissue fibrosis are unclear. The authors show that mesenchymal cells expressing PDGFRβ mediate fibrosis in skeletal muscle and heart via a mechanism involving αv integrin, and that inhibitors of αv integrins attenuate fibrotic responses in mice.

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Autores principales: I. R. Murray, Z. N. Gonzalez, J. Baily, R. Dobie, R. J. Wallace, A. C. Mackinnon, J. R. Smith, S. N. Greenhalgh, A. I. Thompson, K. P. Conroy, D. W. Griggs, P. G. Ruminski, G. A. Gray, M. Singh, M. A. Campbell, T. J. Kendall, J. Dai, Y. Li, J. P. Iredale, H. Simpson, J. Huard, B. Péault, N. C. Henderson
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/8d98304aaf1746329d6b32e5bc823995
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spelling oai:doaj.org-article:8d98304aaf1746329d6b32e5bc8239952021-12-02T17:06:14Zαv integrins on mesenchymal cells regulate skeletal and cardiac muscle fibrosis10.1038/s41467-017-01097-z2041-1723https://doaj.org/article/8d98304aaf1746329d6b32e5bc8239952017-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-01097-zhttps://doaj.org/toc/2041-1723The mechanisms underlying tissue fibrosis are unclear. The authors show that mesenchymal cells expressing PDGFRβ mediate fibrosis in skeletal muscle and heart via a mechanism involving αv integrin, and that inhibitors of αv integrins attenuate fibrotic responses in mice.I. R. MurrayZ. N. GonzalezJ. BailyR. DobieR. J. WallaceA. C. MackinnonJ. R. SmithS. N. GreenhalghA. I. ThompsonK. P. ConroyD. W. GriggsP. G. RuminskiG. A. GrayM. SinghM. A. CampbellT. J. KendallJ. DaiY. LiJ. P. IredaleH. SimpsonJ. HuardB. PéaultN. C. HendersonNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-13 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
I. R. Murray
Z. N. Gonzalez
J. Baily
R. Dobie
R. J. Wallace
A. C. Mackinnon
J. R. Smith
S. N. Greenhalgh
A. I. Thompson
K. P. Conroy
D. W. Griggs
P. G. Ruminski
G. A. Gray
M. Singh
M. A. Campbell
T. J. Kendall
J. Dai
Y. Li
J. P. Iredale
H. Simpson
J. Huard
B. Péault
N. C. Henderson
αv integrins on mesenchymal cells regulate skeletal and cardiac muscle fibrosis
description The mechanisms underlying tissue fibrosis are unclear. The authors show that mesenchymal cells expressing PDGFRβ mediate fibrosis in skeletal muscle and heart via a mechanism involving αv integrin, and that inhibitors of αv integrins attenuate fibrotic responses in mice.
format article
author I. R. Murray
Z. N. Gonzalez
J. Baily
R. Dobie
R. J. Wallace
A. C. Mackinnon
J. R. Smith
S. N. Greenhalgh
A. I. Thompson
K. P. Conroy
D. W. Griggs
P. G. Ruminski
G. A. Gray
M. Singh
M. A. Campbell
T. J. Kendall
J. Dai
Y. Li
J. P. Iredale
H. Simpson
J. Huard
B. Péault
N. C. Henderson
author_facet I. R. Murray
Z. N. Gonzalez
J. Baily
R. Dobie
R. J. Wallace
A. C. Mackinnon
J. R. Smith
S. N. Greenhalgh
A. I. Thompson
K. P. Conroy
D. W. Griggs
P. G. Ruminski
G. A. Gray
M. Singh
M. A. Campbell
T. J. Kendall
J. Dai
Y. Li
J. P. Iredale
H. Simpson
J. Huard
B. Péault
N. C. Henderson
author_sort I. R. Murray
title αv integrins on mesenchymal cells regulate skeletal and cardiac muscle fibrosis
title_short αv integrins on mesenchymal cells regulate skeletal and cardiac muscle fibrosis
title_full αv integrins on mesenchymal cells regulate skeletal and cardiac muscle fibrosis
title_fullStr αv integrins on mesenchymal cells regulate skeletal and cardiac muscle fibrosis
title_full_unstemmed αv integrins on mesenchymal cells regulate skeletal and cardiac muscle fibrosis
title_sort αv integrins on mesenchymal cells regulate skeletal and cardiac muscle fibrosis
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/8d98304aaf1746329d6b32e5bc823995
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