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Impairment of gut microbial biotin metabolism and host biotin status in severe obesity: effect of biotin and prebiotic supplementation on improved metabolism

OBJECTIVES: Gut microbiota is a key component in obesity and type 2 diabetes, yet mechanisms and metabolites central to this interaction remain unclear. We examined the human gut microbiome’s functional composition in healthy metabolic state and the most severe states of obesity and type 2 diabetes...

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Autores principales: Belda, Eugeni, Voland, Lise, Tremaroli, Valentina, Falony, Gwen, Adriouch, Solia, Assmann, Karen E, Prifti, Edi, Aron-Wisnewsky, Judith, Debédat, Jean, Le Roy, Tiphaine, Nielsen, Trine, Amouyal, Chloé, André, Sébastien, Andreelli, Fabrizio, Blüher, Matthias, Chakaroun, Rima, Chilloux, Julien, Coelho, Luis Pedro, Dao, Maria Carlota, Das, Promi, Fellahi, Soraya, Forslund, Sofia, Galleron, Nathalie, Hansen, Tue H, Holmes, Bridget, Ji, Boyang, Krogh Pedersen, Helle, Le, Phuong, Le Chatelier, Emmanuelle, Lewinter, Christian, Mannerås-Holm, Louise, Marquet, Florian, Myridakis, Antonis, Pelloux, Veronique, Pons, Nicolas, Quinquis, Benoit, Rouault, Christine, Roume, Hugo, Salem, Joe-Elie, Sokolovska, Nataliya, Søndertoft, Nadja B, Touch, Sothea, Vieira-Silva, Sara, Galan, Pilar, Holst, Jens, Gøtze, Jens Peter, Køber, Lars, Vestergaard, Henrik, Hansen, Torben, Hercberg, Serge, Oppert, Jean-Michel, Nielsen, Jens, Letunic, Ivica, Dumas, Marc-Emmanuel, Stumvoll, Michael, Pedersen, Oluf Borbye, Bork, Peer, Ehrlich, Stanislav Dusko, Zucker, Jean-Daniel, Bäckhed, Fredrik, Raes, Jeroen, Clément, Karine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BMJ Publishing Group 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9664128/
https://www.ncbi.nlm.nih.gov/pubmed/35017197
http://dx.doi.org/10.1136/gutjnl-2021-325753
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author Belda, Eugeni
Voland, Lise
Tremaroli, Valentina
Falony, Gwen
Adriouch, Solia
Assmann, Karen E
Prifti, Edi
Aron-Wisnewsky, Judith
Debédat, Jean
Le Roy, Tiphaine
Nielsen, Trine
Amouyal, Chloé
André, Sébastien
Andreelli, Fabrizio
Blüher, Matthias
Chakaroun, Rima
Chilloux, Julien
Coelho, Luis Pedro
Dao, Maria Carlota
Das, Promi
Fellahi, Soraya
Forslund, Sofia
Galleron, Nathalie
Hansen, Tue H
Holmes, Bridget
Ji, Boyang
Krogh Pedersen, Helle
Le, Phuong
Le Chatelier, Emmanuelle
Lewinter, Christian
Mannerås-Holm, Louise
Marquet, Florian
Myridakis, Antonis
Pelloux, Veronique
Pons, Nicolas
Quinquis, Benoit
Rouault, Christine
Roume, Hugo
Salem, Joe-Elie
Sokolovska, Nataliya
Søndertoft, Nadja B
Touch, Sothea
Vieira-Silva, Sara
Galan, Pilar
Holst, Jens
Gøtze, Jens Peter
Køber, Lars
Vestergaard, Henrik
Hansen, Torben
Hercberg, Serge
Oppert, Jean-Michel
Nielsen, Jens
Letunic, Ivica
Dumas, Marc-Emmanuel
Stumvoll, Michael
Pedersen, Oluf Borbye
Bork, Peer
Ehrlich, Stanislav Dusko
Zucker, Jean-Daniel
Bäckhed, Fredrik
Raes, Jeroen
Clément, Karine
author_facet Belda, Eugeni
Voland, Lise
Tremaroli, Valentina
Falony, Gwen
Adriouch, Solia
Assmann, Karen E
Prifti, Edi
Aron-Wisnewsky, Judith
Debédat, Jean
Le Roy, Tiphaine
Nielsen, Trine
Amouyal, Chloé
André, Sébastien
Andreelli, Fabrizio
Blüher, Matthias
Chakaroun, Rima
Chilloux, Julien
Coelho, Luis Pedro
Dao, Maria Carlota
Das, Promi
Fellahi, Soraya
Forslund, Sofia
Galleron, Nathalie
Hansen, Tue H
Holmes, Bridget
Ji, Boyang
Krogh Pedersen, Helle
Le, Phuong
Le Chatelier, Emmanuelle
Lewinter, Christian
Mannerås-Holm, Louise
Marquet, Florian
Myridakis, Antonis
Pelloux, Veronique
Pons, Nicolas
Quinquis, Benoit
Rouault, Christine
Roume, Hugo
Salem, Joe-Elie
Sokolovska, Nataliya
Søndertoft, Nadja B
Touch, Sothea
Vieira-Silva, Sara
Galan, Pilar
Holst, Jens
Gøtze, Jens Peter
Køber, Lars
Vestergaard, Henrik
Hansen, Torben
Hercberg, Serge
Oppert, Jean-Michel
Nielsen, Jens
Letunic, Ivica
Dumas, Marc-Emmanuel
Stumvoll, Michael
Pedersen, Oluf Borbye
Bork, Peer
Ehrlich, Stanislav Dusko
Zucker, Jean-Daniel
Bäckhed, Fredrik
Raes, Jeroen
Clément, Karine
author_sort Belda, Eugeni
collection PubMed
description OBJECTIVES: Gut microbiota is a key component in obesity and type 2 diabetes, yet mechanisms and metabolites central to this interaction remain unclear. We examined the human gut microbiome’s functional composition in healthy metabolic state and the most severe states of obesity and type 2 diabetes within the MetaCardis cohort. We focused on the role of B vitamins and B7/B8 biotin for regulation of host metabolic state, as these vitamins influence both microbial function and host metabolism and inflammation. DESIGN: We performed metagenomic analyses in 1545 subjects from the MetaCardis cohorts and different murine experiments, including germ-free and antibiotic treated animals, faecal microbiota transfer, bariatric surgery and supplementation with biotin and prebiotics in mice. RESULTS: Severe obesity is associated with an absolute deficiency in bacterial biotin producers and transporters, whose abundances correlate with host metabolic and inflammatory phenotypes. We found suboptimal circulating biotin levels in severe obesity and altered expression of biotin-associated genes in human adipose tissue. In mice, the absence or depletion of gut microbiota by antibiotics confirmed the microbial contribution to host biotin levels. Bariatric surgery, which improves metabolism and inflammation, associates with increased bacterial biotin producers and improved host systemic biotin in humans and mice. Finally, supplementing high-fat diet-fed mice with fructo-oligosaccharides and biotin improves not only the microbiome diversity, but also the potential of bacterial production of biotin and B vitamins, while limiting weight gain and glycaemic deterioration. CONCLUSION: Strategies combining biotin and prebiotic supplementation could help prevent the deterioration of metabolic states in severe obesity. TRIAL REGISTRATION NUMBER: NCT02059538.
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spelling pubmed-96641282022-11-15 Impairment of gut microbial biotin metabolism and host biotin status in severe obesity: effect of biotin and prebiotic supplementation on improved metabolism Belda, Eugeni Voland, Lise Tremaroli, Valentina Falony, Gwen Adriouch, Solia Assmann, Karen E Prifti, Edi Aron-Wisnewsky, Judith Debédat, Jean Le Roy, Tiphaine Nielsen, Trine Amouyal, Chloé André, Sébastien Andreelli, Fabrizio Blüher, Matthias Chakaroun, Rima Chilloux, Julien Coelho, Luis Pedro Dao, Maria Carlota Das, Promi Fellahi, Soraya Forslund, Sofia Galleron, Nathalie Hansen, Tue H Holmes, Bridget Ji, Boyang Krogh Pedersen, Helle Le, Phuong Le Chatelier, Emmanuelle Lewinter, Christian Mannerås-Holm, Louise Marquet, Florian Myridakis, Antonis Pelloux, Veronique Pons, Nicolas Quinquis, Benoit Rouault, Christine Roume, Hugo Salem, Joe-Elie Sokolovska, Nataliya Søndertoft, Nadja B Touch, Sothea Vieira-Silva, Sara Galan, Pilar Holst, Jens Gøtze, Jens Peter Køber, Lars Vestergaard, Henrik Hansen, Torben Hercberg, Serge Oppert, Jean-Michel Nielsen, Jens Letunic, Ivica Dumas, Marc-Emmanuel Stumvoll, Michael Pedersen, Oluf Borbye Bork, Peer Ehrlich, Stanislav Dusko Zucker, Jean-Daniel Bäckhed, Fredrik Raes, Jeroen Clément, Karine Gut Gut Microbiome OBJECTIVES: Gut microbiota is a key component in obesity and type 2 diabetes, yet mechanisms and metabolites central to this interaction remain unclear. We examined the human gut microbiome’s functional composition in healthy metabolic state and the most severe states of obesity and type 2 diabetes within the MetaCardis cohort. We focused on the role of B vitamins and B7/B8 biotin for regulation of host metabolic state, as these vitamins influence both microbial function and host metabolism and inflammation. DESIGN: We performed metagenomic analyses in 1545 subjects from the MetaCardis cohorts and different murine experiments, including germ-free and antibiotic treated animals, faecal microbiota transfer, bariatric surgery and supplementation with biotin and prebiotics in mice. RESULTS: Severe obesity is associated with an absolute deficiency in bacterial biotin producers and transporters, whose abundances correlate with host metabolic and inflammatory phenotypes. We found suboptimal circulating biotin levels in severe obesity and altered expression of biotin-associated genes in human adipose tissue. In mice, the absence or depletion of gut microbiota by antibiotics confirmed the microbial contribution to host biotin levels. Bariatric surgery, which improves metabolism and inflammation, associates with increased bacterial biotin producers and improved host systemic biotin in humans and mice. Finally, supplementing high-fat diet-fed mice with fructo-oligosaccharides and biotin improves not only the microbiome diversity, but also the potential of bacterial production of biotin and B vitamins, while limiting weight gain and glycaemic deterioration. CONCLUSION: Strategies combining biotin and prebiotic supplementation could help prevent the deterioration of metabolic states in severe obesity. TRIAL REGISTRATION NUMBER: NCT02059538. BMJ Publishing Group 2022-12 2022-01-11 /pmc/articles/PMC9664128/ /pubmed/35017197 http://dx.doi.org/10.1136/gutjnl-2021-325753 Text en © Author(s) (or their employer(s)) 2022. Re-use permitted under CC BY-NC. No commercial re-use. See rights and permissions. Published by BMJ. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article distributed in accordance with the Creative Commons Attribution Non Commercial (CC BY-NC 4.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited, appropriate credit is given, any changes made indicated, and the use is non-commercial. See: http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) .
spellingShingle Gut Microbiome
Belda, Eugeni
Voland, Lise
Tremaroli, Valentina
Falony, Gwen
Adriouch, Solia
Assmann, Karen E
Prifti, Edi
Aron-Wisnewsky, Judith
Debédat, Jean
Le Roy, Tiphaine
Nielsen, Trine
Amouyal, Chloé
André, Sébastien
Andreelli, Fabrizio
Blüher, Matthias
Chakaroun, Rima
Chilloux, Julien
Coelho, Luis Pedro
Dao, Maria Carlota
Das, Promi
Fellahi, Soraya
Forslund, Sofia
Galleron, Nathalie
Hansen, Tue H
Holmes, Bridget
Ji, Boyang
Krogh Pedersen, Helle
Le, Phuong
Le Chatelier, Emmanuelle
Lewinter, Christian
Mannerås-Holm, Louise
Marquet, Florian
Myridakis, Antonis
Pelloux, Veronique
Pons, Nicolas
Quinquis, Benoit
Rouault, Christine
Roume, Hugo
Salem, Joe-Elie
Sokolovska, Nataliya
Søndertoft, Nadja B
Touch, Sothea
Vieira-Silva, Sara
Galan, Pilar
Holst, Jens
Gøtze, Jens Peter
Køber, Lars
Vestergaard, Henrik
Hansen, Torben
Hercberg, Serge
Oppert, Jean-Michel
Nielsen, Jens
Letunic, Ivica
Dumas, Marc-Emmanuel
Stumvoll, Michael
Pedersen, Oluf Borbye
Bork, Peer
Ehrlich, Stanislav Dusko
Zucker, Jean-Daniel
Bäckhed, Fredrik
Raes, Jeroen
Clément, Karine
Impairment of gut microbial biotin metabolism and host biotin status in severe obesity: effect of biotin and prebiotic supplementation on improved metabolism
title Impairment of gut microbial biotin metabolism and host biotin status in severe obesity: effect of biotin and prebiotic supplementation on improved metabolism
title_full Impairment of gut microbial biotin metabolism and host biotin status in severe obesity: effect of biotin and prebiotic supplementation on improved metabolism
title_fullStr Impairment of gut microbial biotin metabolism and host biotin status in severe obesity: effect of biotin and prebiotic supplementation on improved metabolism
title_full_unstemmed Impairment of gut microbial biotin metabolism and host biotin status in severe obesity: effect of biotin and prebiotic supplementation on improved metabolism
title_short Impairment of gut microbial biotin metabolism and host biotin status in severe obesity: effect of biotin and prebiotic supplementation on improved metabolism
title_sort impairment of gut microbial biotin metabolism and host biotin status in severe obesity: effect of biotin and prebiotic supplementation on improved metabolism
topic Gut Microbiome
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9664128/
https://www.ncbi.nlm.nih.gov/pubmed/35017197
http://dx.doi.org/10.1136/gutjnl-2021-325753
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