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Short-chain fatty acid acetate triggers antiviral response mediated by RIG-I in cells from infants with respiratory syncytial virus bronchiolitis

BACKGROUND: Gut microbiota-derived short-chain fatty-acid (SFCA) acetate protects mice against RSV A2 strain infection by increasing interferon-β production and expression of interferon-stimulated genes (ISGs). However, the role of SFCA in RSV infection using strains isolated from patients is unknow...

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Autores principales: Antunes, Krist H., Stein, Renato T., Franceschina, Caroline, da Silva, Emanuelle F., de Freitas, Deise N., Silveira, Josiane, Mocellin, Magáli, Leitão, Lidiane, Fachi, José L., Pral, Laís P., Gonzalez, Amanda, Oliveira, Sarah, Duarte, Leonardo, Cassão, Gisele, Gonçalves, João I.B., Reis, Tatiane M., Abbadi, Bruno L, Dornelles, Maiele, Sperotto, Nathália D.M., Rigo, Maurício, Rodrigues, Hosana, Jones, Marcus, Epifanio, Matias, Guima, Suzana, Setubal, João C., Jorge, Taissa R., Mansur, Daniel S., Mayer, Fabiana Q., Varela, Ana Paula M., Bizarro, Cristiano V., Machado, Pablo, Basso, Luiz A., Polack, Fernando P., Custovic, Adnan, Vinolo, Marco A.R., de Souza, Ana Paula D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8871125/
https://www.ncbi.nlm.nih.gov/pubmed/35220042
http://dx.doi.org/10.1016/j.ebiom.2022.103891
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author Antunes, Krist H.
Stein, Renato T.
Franceschina, Caroline
da Silva, Emanuelle F.
de Freitas, Deise N.
Silveira, Josiane
Mocellin, Magáli
Leitão, Lidiane
Fachi, José L.
Pral, Laís P.
Gonzalez, Amanda
Oliveira, Sarah
Duarte, Leonardo
Cassão, Gisele
Gonçalves, João I.B.
Reis, Tatiane M.
Abbadi, Bruno L
Dornelles, Maiele
Sperotto, Nathália D.M.
Rigo, Maurício
Rodrigues, Hosana
Jones, Marcus
Epifanio, Matias
Guima, Suzana
Setubal, João C.
Jorge, Taissa R.
Mansur, Daniel S.
Mayer, Fabiana Q.
Varela, Ana Paula M.
Bizarro, Cristiano V.
Machado, Pablo
Basso, Luiz A.
Polack, Fernando P.
Custovic, Adnan
Vinolo, Marco A.R.
de Souza, Ana Paula D.
author_facet Antunes, Krist H.
Stein, Renato T.
Franceschina, Caroline
da Silva, Emanuelle F.
de Freitas, Deise N.
Silveira, Josiane
Mocellin, Magáli
Leitão, Lidiane
Fachi, José L.
Pral, Laís P.
Gonzalez, Amanda
Oliveira, Sarah
Duarte, Leonardo
Cassão, Gisele
Gonçalves, João I.B.
Reis, Tatiane M.
Abbadi, Bruno L
Dornelles, Maiele
Sperotto, Nathália D.M.
Rigo, Maurício
Rodrigues, Hosana
Jones, Marcus
Epifanio, Matias
Guima, Suzana
Setubal, João C.
Jorge, Taissa R.
Mansur, Daniel S.
Mayer, Fabiana Q.
Varela, Ana Paula M.
Bizarro, Cristiano V.
Machado, Pablo
Basso, Luiz A.
Polack, Fernando P.
Custovic, Adnan
Vinolo, Marco A.R.
de Souza, Ana Paula D.
author_sort Antunes, Krist H.
collection PubMed
description BACKGROUND: Gut microbiota-derived short-chain fatty-acid (SFCA) acetate protects mice against RSV A2 strain infection by increasing interferon-β production and expression of interferon-stimulated genes (ISGs). However, the role of SFCA in RSV infection using strains isolated from patients is unknown. METHODS: We first used RSV clinical strains isolated from infants hospitalized with RSV bronchiolitis to investigate the effects of in vitro SCFA-acetate treatment of human pulmonary epithelial cells. We next examined whether SCFA-acetate treatment is beneficial in a mouse model of RSV infection using clinical isolates. We sought to investigate the relationship of gut microbiota and fecal acetate with disease severity among infants hospitalized with RSV bronchiolitis, and whether treating their respiratory epithelial cells with SCFA-acetate ex-vivo impacts viral load and ISG expression. We further treated epithelial cells from SARS-CoV-2 infected patients with SCFA-acetate. FINDINGS: In vitro pre-treatment of A549 cells with SCFA-acetate reduced RSV infection with clinical isolates and increased the expression of RIG-I and ISG15. Animals treated with SCFA-acetate intranasally recovered significantly faster, with reduction in the RSV clinical isolates viral load, and increased lung expression of IFNB1 and the RIG-I. Experiments in RIG-I knockout A549 cells demonstrated that the protection relies on RIG-I presence. Gut microbial profile was associated with bronchiolitis severity and with acetate in stool. Increased SCFA-acetate levels were associated with increasing oxygen saturation at admission, and shorter duration of fever. Ex-vivo treatment of patients’ respiratory cells with SCFA-acetate reduced RSV load and increased expression of ISGs OAS1 and ISG15, and virus recognition receptors MAVS and RIG-I, but not IFNB1. These SCFA-acetate effects were not found on cells from SARS-CoV-2 infected patients. INTERPRETATION: SCFA-acetate reduces the severity of RSV infection and RSV viral load through modulation of RIG-I expression. FUNDING: FAPERGS (FAPERGS/MS/CNPq/SESRS no. 03/2017 - PPSUS 17/2551-0001380-8 and COVID-19 20/2551-0000258-6); CNPq 312504/2017-9; CAPES) - Finance Code 001.
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spelling pubmed-88711252022-02-25 Short-chain fatty acid acetate triggers antiviral response mediated by RIG-I in cells from infants with respiratory syncytial virus bronchiolitis Antunes, Krist H. Stein, Renato T. Franceschina, Caroline da Silva, Emanuelle F. de Freitas, Deise N. Silveira, Josiane Mocellin, Magáli Leitão, Lidiane Fachi, José L. Pral, Laís P. Gonzalez, Amanda Oliveira, Sarah Duarte, Leonardo Cassão, Gisele Gonçalves, João I.B. Reis, Tatiane M. Abbadi, Bruno L Dornelles, Maiele Sperotto, Nathália D.M. Rigo, Maurício Rodrigues, Hosana Jones, Marcus Epifanio, Matias Guima, Suzana Setubal, João C. Jorge, Taissa R. Mansur, Daniel S. Mayer, Fabiana Q. Varela, Ana Paula M. Bizarro, Cristiano V. Machado, Pablo Basso, Luiz A. Polack, Fernando P. Custovic, Adnan Vinolo, Marco A.R. de Souza, Ana Paula D. EBioMedicine Articles BACKGROUND: Gut microbiota-derived short-chain fatty-acid (SFCA) acetate protects mice against RSV A2 strain infection by increasing interferon-β production and expression of interferon-stimulated genes (ISGs). However, the role of SFCA in RSV infection using strains isolated from patients is unknown. METHODS: We first used RSV clinical strains isolated from infants hospitalized with RSV bronchiolitis to investigate the effects of in vitro SCFA-acetate treatment of human pulmonary epithelial cells. We next examined whether SCFA-acetate treatment is beneficial in a mouse model of RSV infection using clinical isolates. We sought to investigate the relationship of gut microbiota and fecal acetate with disease severity among infants hospitalized with RSV bronchiolitis, and whether treating their respiratory epithelial cells with SCFA-acetate ex-vivo impacts viral load and ISG expression. We further treated epithelial cells from SARS-CoV-2 infected patients with SCFA-acetate. FINDINGS: In vitro pre-treatment of A549 cells with SCFA-acetate reduced RSV infection with clinical isolates and increased the expression of RIG-I and ISG15. Animals treated with SCFA-acetate intranasally recovered significantly faster, with reduction in the RSV clinical isolates viral load, and increased lung expression of IFNB1 and the RIG-I. Experiments in RIG-I knockout A549 cells demonstrated that the protection relies on RIG-I presence. Gut microbial profile was associated with bronchiolitis severity and with acetate in stool. Increased SCFA-acetate levels were associated with increasing oxygen saturation at admission, and shorter duration of fever. Ex-vivo treatment of patients’ respiratory cells with SCFA-acetate reduced RSV load and increased expression of ISGs OAS1 and ISG15, and virus recognition receptors MAVS and RIG-I, but not IFNB1. These SCFA-acetate effects were not found on cells from SARS-CoV-2 infected patients. INTERPRETATION: SCFA-acetate reduces the severity of RSV infection and RSV viral load through modulation of RIG-I expression. FUNDING: FAPERGS (FAPERGS/MS/CNPq/SESRS no. 03/2017 - PPSUS 17/2551-0001380-8 and COVID-19 20/2551-0000258-6); CNPq 312504/2017-9; CAPES) - Finance Code 001. Elsevier 2022-02-24 /pmc/articles/PMC8871125/ /pubmed/35220042 http://dx.doi.org/10.1016/j.ebiom.2022.103891 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Articles
Antunes, Krist H.
Stein, Renato T.
Franceschina, Caroline
da Silva, Emanuelle F.
de Freitas, Deise N.
Silveira, Josiane
Mocellin, Magáli
Leitão, Lidiane
Fachi, José L.
Pral, Laís P.
Gonzalez, Amanda
Oliveira, Sarah
Duarte, Leonardo
Cassão, Gisele
Gonçalves, João I.B.
Reis, Tatiane M.
Abbadi, Bruno L
Dornelles, Maiele
Sperotto, Nathália D.M.
Rigo, Maurício
Rodrigues, Hosana
Jones, Marcus
Epifanio, Matias
Guima, Suzana
Setubal, João C.
Jorge, Taissa R.
Mansur, Daniel S.
Mayer, Fabiana Q.
Varela, Ana Paula M.
Bizarro, Cristiano V.
Machado, Pablo
Basso, Luiz A.
Polack, Fernando P.
Custovic, Adnan
Vinolo, Marco A.R.
de Souza, Ana Paula D.
Short-chain fatty acid acetate triggers antiviral response mediated by RIG-I in cells from infants with respiratory syncytial virus bronchiolitis
title Short-chain fatty acid acetate triggers antiviral response mediated by RIG-I in cells from infants with respiratory syncytial virus bronchiolitis
title_full Short-chain fatty acid acetate triggers antiviral response mediated by RIG-I in cells from infants with respiratory syncytial virus bronchiolitis
title_fullStr Short-chain fatty acid acetate triggers antiviral response mediated by RIG-I in cells from infants with respiratory syncytial virus bronchiolitis
title_full_unstemmed Short-chain fatty acid acetate triggers antiviral response mediated by RIG-I in cells from infants with respiratory syncytial virus bronchiolitis
title_short Short-chain fatty acid acetate triggers antiviral response mediated by RIG-I in cells from infants with respiratory syncytial virus bronchiolitis
title_sort short-chain fatty acid acetate triggers antiviral response mediated by rig-i in cells from infants with respiratory syncytial virus bronchiolitis
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8871125/
https://www.ncbi.nlm.nih.gov/pubmed/35220042
http://dx.doi.org/10.1016/j.ebiom.2022.103891
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