Macrophage hypoxia signaling regulates cardiac fibrosis via Oncostatin M

Fibrosis is a hallmark of several cardiac pathologies and its underlying mechanisms are still poorly defined. Here the authors show that macrophage hypoxia signaling following transverse aortic constriction in mice suppresses the activation of cardiac fibroblasts by secreting oncostatin M.

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Autores principales: Hajime Abe, Norihiko Takeda, Takayuki Isagawa, Hiroaki Semba, Satoshi Nishimura, Masaki Suimye Morioka, Yu Nakagama, Tatsuyuki Sato, Katsura Soma, Katsuhiro Koyama, Masaki Wake, Manami Katoh, Masataka Asagiri, Michael L. Neugent, Jung-whan Kim, Christian Stockmann, Tomo Yonezawa, Ryo Inuzuka, Yasushi Hirota, Koji Maemura, Takeshi Yamashita, Kinya Otsu, Ichiro Manabe, Ryozo Nagai, Issei Komuro
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/71dda70f0fa943e6abde76eae9ef37b9
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spelling oai:doaj.org-article:71dda70f0fa943e6abde76eae9ef37b92021-12-02T14:38:43ZMacrophage hypoxia signaling regulates cardiac fibrosis via Oncostatin M10.1038/s41467-019-10859-w2041-1723https://doaj.org/article/71dda70f0fa943e6abde76eae9ef37b92019-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-10859-whttps://doaj.org/toc/2041-1723Fibrosis is a hallmark of several cardiac pathologies and its underlying mechanisms are still poorly defined. Here the authors show that macrophage hypoxia signaling following transverse aortic constriction in mice suppresses the activation of cardiac fibroblasts by secreting oncostatin M.Hajime AbeNorihiko TakedaTakayuki IsagawaHiroaki SembaSatoshi NishimuraMasaki Suimye MoriokaYu NakagamaTatsuyuki SatoKatsura SomaKatsuhiro KoyamaMasaki WakeManami KatohMasataka AsagiriMichael L. NeugentJung-whan KimChristian StockmannTomo YonezawaRyo InuzukaYasushi HirotaKoji MaemuraTakeshi YamashitaKinya OtsuIchiro ManabeRyozo NagaiIssei KomuroNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-10 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Hajime Abe
Norihiko Takeda
Takayuki Isagawa
Hiroaki Semba
Satoshi Nishimura
Masaki Suimye Morioka
Yu Nakagama
Tatsuyuki Sato
Katsura Soma
Katsuhiro Koyama
Masaki Wake
Manami Katoh
Masataka Asagiri
Michael L. Neugent
Jung-whan Kim
Christian Stockmann
Tomo Yonezawa
Ryo Inuzuka
Yasushi Hirota
Koji Maemura
Takeshi Yamashita
Kinya Otsu
Ichiro Manabe
Ryozo Nagai
Issei Komuro
Macrophage hypoxia signaling regulates cardiac fibrosis via Oncostatin M
description Fibrosis is a hallmark of several cardiac pathologies and its underlying mechanisms are still poorly defined. Here the authors show that macrophage hypoxia signaling following transverse aortic constriction in mice suppresses the activation of cardiac fibroblasts by secreting oncostatin M.
format article
author Hajime Abe
Norihiko Takeda
Takayuki Isagawa
Hiroaki Semba
Satoshi Nishimura
Masaki Suimye Morioka
Yu Nakagama
Tatsuyuki Sato
Katsura Soma
Katsuhiro Koyama
Masaki Wake
Manami Katoh
Masataka Asagiri
Michael L. Neugent
Jung-whan Kim
Christian Stockmann
Tomo Yonezawa
Ryo Inuzuka
Yasushi Hirota
Koji Maemura
Takeshi Yamashita
Kinya Otsu
Ichiro Manabe
Ryozo Nagai
Issei Komuro
author_facet Hajime Abe
Norihiko Takeda
Takayuki Isagawa
Hiroaki Semba
Satoshi Nishimura
Masaki Suimye Morioka
Yu Nakagama
Tatsuyuki Sato
Katsura Soma
Katsuhiro Koyama
Masaki Wake
Manami Katoh
Masataka Asagiri
Michael L. Neugent
Jung-whan Kim
Christian Stockmann
Tomo Yonezawa
Ryo Inuzuka
Yasushi Hirota
Koji Maemura
Takeshi Yamashita
Kinya Otsu
Ichiro Manabe
Ryozo Nagai
Issei Komuro
author_sort Hajime Abe
title Macrophage hypoxia signaling regulates cardiac fibrosis via Oncostatin M
title_short Macrophage hypoxia signaling regulates cardiac fibrosis via Oncostatin M
title_full Macrophage hypoxia signaling regulates cardiac fibrosis via Oncostatin M
title_fullStr Macrophage hypoxia signaling regulates cardiac fibrosis via Oncostatin M
title_full_unstemmed Macrophage hypoxia signaling regulates cardiac fibrosis via Oncostatin M
title_sort macrophage hypoxia signaling regulates cardiac fibrosis via oncostatin m
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/71dda70f0fa943e6abde76eae9ef37b9
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