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The Gut Microbiota Metabolite Succinate Promotes Adipose Tissue Browning in Crohn’s Disease

BACKGROUND AND AIMS: Crohn’s disease [CD] is associated with complex microbe–host interactions, involving changes in microbial communities, and gut barrier defects, leading to the translocation of microorganisms to surrounding adipose tissue [AT]. We evaluated the presence of beige AT depots in CD a...

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Autores principales: Monfort-Ferré, Diandra, Caro, Aleidis, Menacho, Margarita, Martí, Marc, Espina, Beatriz, Boronat-Toscano, Albert, Nuñez-Roa, Cati, Seco, Jesús, Bautista, Michelle, Espín, Eloy, Megía, Ana, Vendrell, Joan, Fernández-Veledo, Sonia, Serena, Carolina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9624294/
https://www.ncbi.nlm.nih.gov/pubmed/35554517
http://dx.doi.org/10.1093/ecco-jcc/jjac069
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author Monfort-Ferré, Diandra
Caro, Aleidis
Menacho, Margarita
Martí, Marc
Espina, Beatriz
Boronat-Toscano, Albert
Nuñez-Roa, Cati
Seco, Jesús
Bautista, Michelle
Espín, Eloy
Megía, Ana
Vendrell, Joan
Fernández-Veledo, Sonia
Serena, Carolina
author_facet Monfort-Ferré, Diandra
Caro, Aleidis
Menacho, Margarita
Martí, Marc
Espina, Beatriz
Boronat-Toscano, Albert
Nuñez-Roa, Cati
Seco, Jesús
Bautista, Michelle
Espín, Eloy
Megía, Ana
Vendrell, Joan
Fernández-Veledo, Sonia
Serena, Carolina
author_sort Monfort-Ferré, Diandra
collection PubMed
description BACKGROUND AND AIMS: Crohn’s disease [CD] is associated with complex microbe–host interactions, involving changes in microbial communities, and gut barrier defects, leading to the translocation of microorganisms to surrounding adipose tissue [AT]. We evaluated the presence of beige AT depots in CD and questioned whether succinate and/or bacterial translocation promotes white-to-beige transition in adipocytes. METHODS: Visceral [VAT] and subcutaneous [SAT] AT biopsies, serum and plasma were obtained from patients with active [n = 21] or inactive [n = 12] CD, and from healthy controls [n = 15]. Adipose-derived stem cells [ASCs] and AT macrophages [ATMs] were isolated from VAT biopsies. RESULTS: Plasma succinate levels were significantly higher in patients with active CD than in controls and were intermediate in those with inactive disease. Plasma succinate correlated with the inflammatory marker high-sensitivity C-reactive protein. Expression of the succinate receptor SUCNR1 was higher in VAT, ASCs and ATMs from the active CD group than from the inactive or control groups. Succinate treatment of ASCs elevated the expression of several beige AT markers from controls and from patients with inactive disease, including uncoupling protein-1 [UCP1]. Notably, beige AT markers were prominent in ASCs from patients with active CD. Secretome profiling revealed that ASCs from patients with active disease secrete beige AT-related proteins, and co-culture assays showed that bacteria also trigger the white-to-beige switch of ASCs from patients with CD. Finally, AT depots from patients with CD exhibited a conversion from white to beige AT together with high UCP1 expression, which was corroborated by in situ thermal imaging analysis. CONCLUSIONS: Succinate and bacteria trigger white-to-beige AT transition in CD. Understanding the role of beige AT in CD might aid in the development of therapeutic or diagnostic interventions.
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spelling pubmed-96242942022-11-02 The Gut Microbiota Metabolite Succinate Promotes Adipose Tissue Browning in Crohn’s Disease Monfort-Ferré, Diandra Caro, Aleidis Menacho, Margarita Martí, Marc Espina, Beatriz Boronat-Toscano, Albert Nuñez-Roa, Cati Seco, Jesús Bautista, Michelle Espín, Eloy Megía, Ana Vendrell, Joan Fernández-Veledo, Sonia Serena, Carolina J Crohns Colitis Original Articles BACKGROUND AND AIMS: Crohn’s disease [CD] is associated with complex microbe–host interactions, involving changes in microbial communities, and gut barrier defects, leading to the translocation of microorganisms to surrounding adipose tissue [AT]. We evaluated the presence of beige AT depots in CD and questioned whether succinate and/or bacterial translocation promotes white-to-beige transition in adipocytes. METHODS: Visceral [VAT] and subcutaneous [SAT] AT biopsies, serum and plasma were obtained from patients with active [n = 21] or inactive [n = 12] CD, and from healthy controls [n = 15]. Adipose-derived stem cells [ASCs] and AT macrophages [ATMs] were isolated from VAT biopsies. RESULTS: Plasma succinate levels were significantly higher in patients with active CD than in controls and were intermediate in those with inactive disease. Plasma succinate correlated with the inflammatory marker high-sensitivity C-reactive protein. Expression of the succinate receptor SUCNR1 was higher in VAT, ASCs and ATMs from the active CD group than from the inactive or control groups. Succinate treatment of ASCs elevated the expression of several beige AT markers from controls and from patients with inactive disease, including uncoupling protein-1 [UCP1]. Notably, beige AT markers were prominent in ASCs from patients with active CD. Secretome profiling revealed that ASCs from patients with active disease secrete beige AT-related proteins, and co-culture assays showed that bacteria also trigger the white-to-beige switch of ASCs from patients with CD. Finally, AT depots from patients with CD exhibited a conversion from white to beige AT together with high UCP1 expression, which was corroborated by in situ thermal imaging analysis. CONCLUSIONS: Succinate and bacteria trigger white-to-beige AT transition in CD. Understanding the role of beige AT in CD might aid in the development of therapeutic or diagnostic interventions. Oxford University Press 2022-05-12 /pmc/articles/PMC9624294/ /pubmed/35554517 http://dx.doi.org/10.1093/ecco-jcc/jjac069 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of European Crohn’s and Colitis Organisation. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Original Articles
Monfort-Ferré, Diandra
Caro, Aleidis
Menacho, Margarita
Martí, Marc
Espina, Beatriz
Boronat-Toscano, Albert
Nuñez-Roa, Cati
Seco, Jesús
Bautista, Michelle
Espín, Eloy
Megía, Ana
Vendrell, Joan
Fernández-Veledo, Sonia
Serena, Carolina
The Gut Microbiota Metabolite Succinate Promotes Adipose Tissue Browning in Crohn’s Disease
title The Gut Microbiota Metabolite Succinate Promotes Adipose Tissue Browning in Crohn’s Disease
title_full The Gut Microbiota Metabolite Succinate Promotes Adipose Tissue Browning in Crohn’s Disease
title_fullStr The Gut Microbiota Metabolite Succinate Promotes Adipose Tissue Browning in Crohn’s Disease
title_full_unstemmed The Gut Microbiota Metabolite Succinate Promotes Adipose Tissue Browning in Crohn’s Disease
title_short The Gut Microbiota Metabolite Succinate Promotes Adipose Tissue Browning in Crohn’s Disease
title_sort gut microbiota metabolite succinate promotes adipose tissue browning in crohn’s disease
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9624294/
https://www.ncbi.nlm.nih.gov/pubmed/35554517
http://dx.doi.org/10.1093/ecco-jcc/jjac069
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