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Microbiota-derived acetate protects against respiratory syncytial virus infection through a GPR43-type 1 interferon response.

Nat Commun. 2019-07; 
AntunesKrist Helen,FachiJosé Luís,de PaulaRosemeire,da SilvaEmanuelle Fraga,PralLaís Passariello,Dos SantosAdara áurea,DiasGreicy Brisa Malaquias,VargasJosé Eduardo,PugaRenato,MayerFabiana Quoos,MaitoFábio,Zárate-BladésCarlos R,AjamiNadim J,Sant'AnaMarcella Ramos,CandrevaThamiris,RodriguesHosana Gomes,SchmieleMarcio,Silva ClericiMaria Teresa Pedrosa,Proen?a-ModenaJosé Luiz,VieiraAngélica Thomas,MackayCharles R,MansurDaniel,CaballeroMauricio T,MarzecJacqui,LiJianying,WangXuting,BellDouglas,PolackFernando P,KleebergerSteven R,SteinRenato T,VinoloMarco Aurélio Ramirez,de SouzaAna Paula Du
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摘要

Severe respiratory syncytial virus (RSV) infection is a major cause of morbidity and mortality in infants?<2 years-old. Here we describe that high-fiber diet protects mice from RSV infection. This effect was dependent on intestinal microbiota and production of acetate. Oral administration of acetate mediated interferon-β (IFN-β) response?by increasing expression of interferon-stimulated genes in the lung. These effects were associated with reduction of viral load and pulmonary inflammation in RSV-infected mice. Type 1?IFN?signaling via the IFN-1 receptor (IFNAR) was essential for acetate antiviral activity in pulmonary epithelial cell lines and for the acetate protective effect in RSV-infected mice. Activatio... More

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