Hypoxia ameliorates intestinal inflammation through NLRP3/mTOR downregulation and autophagy activation

Hypoxia and HIF-1α activation are protective in mouse models of colitis, and the latter regulates autophagy. Here Cosin-Roger et al. show that hypoxia ameliorates intestinal inflammation in Crohn’s patients and murine colitis models by inhibiting mTOR/NLRP3 pathway and promoting autophagy.

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Autores principales: Jesus Cosin-Roger, Simona Simmen, Hassan Melhem, Kirstin Atrott, Isabelle Frey-Wagner, Martin Hausmann, Cheryl de Vallière, Marianne R. Spalinger, Patrick Spielmann, Roland H. Wenger, Jonas Zeitz, Stephan R. Vavricka, Gerhard Rogler, Pedro A. Ruiz
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/ec822dd8ef504b80b17abfefcd2b752a
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spelling oai:doaj.org-article:ec822dd8ef504b80b17abfefcd2b752a2021-12-02T13:23:47ZHypoxia ameliorates intestinal inflammation through NLRP3/mTOR downregulation and autophagy activation10.1038/s41467-017-00213-32041-1723https://doaj.org/article/ec822dd8ef504b80b17abfefcd2b752a2017-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00213-3https://doaj.org/toc/2041-1723Hypoxia and HIF-1α activation are protective in mouse models of colitis, and the latter regulates autophagy. Here Cosin-Roger et al. show that hypoxia ameliorates intestinal inflammation in Crohn’s patients and murine colitis models by inhibiting mTOR/NLRP3 pathway and promoting autophagy.Jesus Cosin-RogerSimona SimmenHassan MelhemKirstin AtrottIsabelle Frey-WagnerMartin HausmannCheryl de VallièreMarianne R. SpalingerPatrick SpielmannRoland H. WengerJonas ZeitzStephan R. VavrickaGerhard RoglerPedro A. RuizNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-13 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jesus Cosin-Roger
Simona Simmen
Hassan Melhem
Kirstin Atrott
Isabelle Frey-Wagner
Martin Hausmann
Cheryl de Vallière
Marianne R. Spalinger
Patrick Spielmann
Roland H. Wenger
Jonas Zeitz
Stephan R. Vavricka
Gerhard Rogler
Pedro A. Ruiz
Hypoxia ameliorates intestinal inflammation through NLRP3/mTOR downregulation and autophagy activation
description Hypoxia and HIF-1α activation are protective in mouse models of colitis, and the latter regulates autophagy. Here Cosin-Roger et al. show that hypoxia ameliorates intestinal inflammation in Crohn’s patients and murine colitis models by inhibiting mTOR/NLRP3 pathway and promoting autophagy.
format article
author Jesus Cosin-Roger
Simona Simmen
Hassan Melhem
Kirstin Atrott
Isabelle Frey-Wagner
Martin Hausmann
Cheryl de Vallière
Marianne R. Spalinger
Patrick Spielmann
Roland H. Wenger
Jonas Zeitz
Stephan R. Vavricka
Gerhard Rogler
Pedro A. Ruiz
author_facet Jesus Cosin-Roger
Simona Simmen
Hassan Melhem
Kirstin Atrott
Isabelle Frey-Wagner
Martin Hausmann
Cheryl de Vallière
Marianne R. Spalinger
Patrick Spielmann
Roland H. Wenger
Jonas Zeitz
Stephan R. Vavricka
Gerhard Rogler
Pedro A. Ruiz
author_sort Jesus Cosin-Roger
title Hypoxia ameliorates intestinal inflammation through NLRP3/mTOR downregulation and autophagy activation
title_short Hypoxia ameliorates intestinal inflammation through NLRP3/mTOR downregulation and autophagy activation
title_full Hypoxia ameliorates intestinal inflammation through NLRP3/mTOR downregulation and autophagy activation
title_fullStr Hypoxia ameliorates intestinal inflammation through NLRP3/mTOR downregulation and autophagy activation
title_full_unstemmed Hypoxia ameliorates intestinal inflammation through NLRP3/mTOR downregulation and autophagy activation
title_sort hypoxia ameliorates intestinal inflammation through nlrp3/mtor downregulation and autophagy activation
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/ec822dd8ef504b80b17abfefcd2b752a
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