Additional file 6 of Functional changes of the gastric bypass microbiota reactivate thermogenic adipose tissue and systemic glucose control via intestinal FXR-TGR5 crosstalk in diet-induced obesity
Additional file 6: Supplementary Figure S6. Post-RYGB gut microbiota reduces adipose tissue fibrosis.
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creator | Münzker, Julia Haase, Nadine Till, Andreas Sucher, Robert Haange, Sven-Bastiaan Nemetschke, Linda Gnad, Thorsten Jäger, Elisabeth Chen, Jiesi Riede, Sjaak J. Chakaroun, Rima Massier, Lucas Kovacs, Peter Ost, Mario Rolle-Kampczyk, Ulrike Jehmlich, Nico Weiner, Juliane Heiker, John T. Klöting, Nora Seeger, Gudrun Morawski, Markus Keitel, Verena Pfeifer, Alexander von Bergen, Martin Heeren, Joerg Krügel, Ute Fenske, Wiebke K. |
description | Additional file 6: Supplementary Figure S6. Post-RYGB gut microbiota reduces adipose tissue fibrosis. |
doi_str_mv | 10.6084/m9.figshare.20138382 |
format | Image |
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subjects | Biochemistry Biological Sciences not elsewhere classified Chemical Sciences not elsewhere classified Ecology FOS: Biological sciences FOS: Chemical sciences Genetics Microbiology Physiology Science Policy Space Science |
title | Additional file 6 of Functional changes of the gastric bypass microbiota reactivate thermogenic adipose tissue and systemic glucose control via intestinal FXR-TGR5 crosstalk in diet-induced obesity |
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