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Barley β-glucan consumption improves glucose tolerance by increasing intestinal succinate concentrations

Food Science and Technology

Barley β-glucan consumption improves glucose tolerance by increasing intestinal succinate concentrations

K. Mio, Y. Goto, et al.

Discover how barley β-glucan can transform gut health and enhance glucose metabolism! Research by Kento Mio, Yuka Goto, Tsubasa Matsuoka, Mitsuko Komatsu, Chiharu Ishii, Jiayue Yang, Toshiki Kobayashi, Seiichiro Aoe, and Shinji Fukuda reveals exciting insights about gut microbiota and succinate levels in improving glucose tolerance. Don't miss out on these groundbreaking findings!

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~3 min • Beginner • English
Abstract
Barley is rich in β-glucan, which can alter gut microbiota and metabolome profiles, potentially affecting host metabolism. However, the microbiota and metabolites increased by barley β-glucan remain unclear. In this study, we focused on the gut-microbiota-derived metabolite succinate and investigated the microbiome and metabolome profiles altered by barley β-glucan intake. C57BL/6J mice were fed a standard or middle-fat diet containing barley flour rich in β-glucan or barley flour without β-glucan, and their gut microbiota and metabolome profiles were analyzed. The results showed increased Bacteroides, Parasutterella, and succinate due to barley β-glucan intake independent of diet differences. Next, we used mice lacking slc13a2, a gene that is involved in the cellular uptake of succinate. Wild-type mice showed improved glucose tolerance after the intake of barley β-glucan, but this effect was attenuated in the slc13a2-deficient mice. These results suggest that barley β-glucan intake increases succinate and succinate-producing bacteria and affects glucose metabolism.
Publisher
npj Science of Food
Published On
Sep 30, 2024
Authors
Kento Mio, Yuka Goto, Tsubasa Matsuoka, Mitsuko Komatsu, Chiharu Ishii, Jiayue Yang, Toshiki Kobayashi, Seiichiro Aoe, Shinji Fukuda
Tags
barley β-glucan
gut microbiota
succinate
glucose metabolism
Bacteroides
Parasutterella
metabolome profiles
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