Genetic and chemical inhibition of IRF5 suppresses pre-existing mouse lupus-like disease

IRF5 is a potential target for therapy in systemic lupus erythematosus (SLE). Here the authors show using mouse SLE-like models that genetic or chemical inhibition of IRF5 after SLE onset could be more effective than, or an add on for, currently utilised type I interferon inhibition.

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Autores principales: Tatsuma Ban, Masako Kikuchi, Go R. Sato, Akio Manabe, Noriko Tagata, Kayo Harita, Akira Nishiyama, Kenichi Nishimura, Ryusuke Yoshimi, Yohei Kirino, Hideyuki Yanai, Yoshiko Matsumoto, Shuichi Suzuki, Hiroe Hihara, Masashi Ito, Kappei Tsukahara, Kentaro Yoshimatsu, Tadashi Yamamoto, Tadatsugu Taniguchi, Hideaki Nakajima, Shuichi Ito, Tomohiko Tamura
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/bdb59bea8b1b42119ff3a063d9c303ba
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spelling oai:doaj.org-article:bdb59bea8b1b42119ff3a063d9c303ba2021-12-02T16:43:31ZGenetic and chemical inhibition of IRF5 suppresses pre-existing mouse lupus-like disease10.1038/s41467-021-24609-42041-1723https://doaj.org/article/bdb59bea8b1b42119ff3a063d9c303ba2021-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24609-4https://doaj.org/toc/2041-1723IRF5 is a potential target for therapy in systemic lupus erythematosus (SLE). Here the authors show using mouse SLE-like models that genetic or chemical inhibition of IRF5 after SLE onset could be more effective than, or an add on for, currently utilised type I interferon inhibition.Tatsuma BanMasako KikuchiGo R. SatoAkio ManabeNoriko TagataKayo HaritaAkira NishiyamaKenichi NishimuraRyusuke YoshimiYohei KirinoHideyuki YanaiYoshiko MatsumotoShuichi SuzukiHiroe HiharaMasashi ItoKappei TsukaharaKentaro YoshimatsuTadashi YamamotoTadatsugu TaniguchiHideaki NakajimaShuichi ItoTomohiko TamuraNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-14 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Tatsuma Ban
Masako Kikuchi
Go R. Sato
Akio Manabe
Noriko Tagata
Kayo Harita
Akira Nishiyama
Kenichi Nishimura
Ryusuke Yoshimi
Yohei Kirino
Hideyuki Yanai
Yoshiko Matsumoto
Shuichi Suzuki
Hiroe Hihara
Masashi Ito
Kappei Tsukahara
Kentaro Yoshimatsu
Tadashi Yamamoto
Tadatsugu Taniguchi
Hideaki Nakajima
Shuichi Ito
Tomohiko Tamura
Genetic and chemical inhibition of IRF5 suppresses pre-existing mouse lupus-like disease
description IRF5 is a potential target for therapy in systemic lupus erythematosus (SLE). Here the authors show using mouse SLE-like models that genetic or chemical inhibition of IRF5 after SLE onset could be more effective than, or an add on for, currently utilised type I interferon inhibition.
format article
author Tatsuma Ban
Masako Kikuchi
Go R. Sato
Akio Manabe
Noriko Tagata
Kayo Harita
Akira Nishiyama
Kenichi Nishimura
Ryusuke Yoshimi
Yohei Kirino
Hideyuki Yanai
Yoshiko Matsumoto
Shuichi Suzuki
Hiroe Hihara
Masashi Ito
Kappei Tsukahara
Kentaro Yoshimatsu
Tadashi Yamamoto
Tadatsugu Taniguchi
Hideaki Nakajima
Shuichi Ito
Tomohiko Tamura
author_facet Tatsuma Ban
Masako Kikuchi
Go R. Sato
Akio Manabe
Noriko Tagata
Kayo Harita
Akira Nishiyama
Kenichi Nishimura
Ryusuke Yoshimi
Yohei Kirino
Hideyuki Yanai
Yoshiko Matsumoto
Shuichi Suzuki
Hiroe Hihara
Masashi Ito
Kappei Tsukahara
Kentaro Yoshimatsu
Tadashi Yamamoto
Tadatsugu Taniguchi
Hideaki Nakajima
Shuichi Ito
Tomohiko Tamura
author_sort Tatsuma Ban
title Genetic and chemical inhibition of IRF5 suppresses pre-existing mouse lupus-like disease
title_short Genetic and chemical inhibition of IRF5 suppresses pre-existing mouse lupus-like disease
title_full Genetic and chemical inhibition of IRF5 suppresses pre-existing mouse lupus-like disease
title_fullStr Genetic and chemical inhibition of IRF5 suppresses pre-existing mouse lupus-like disease
title_full_unstemmed Genetic and chemical inhibition of IRF5 suppresses pre-existing mouse lupus-like disease
title_sort genetic and chemical inhibition of irf5 suppresses pre-existing mouse lupus-like disease
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/bdb59bea8b1b42119ff3a063d9c303ba
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