Host metabolic benefits of prebiotic exopolysaccharides produced by <i>Leuconostoc mesenteroides</i>
Junki Miyamoto, Hidenori Shimizu, Keiko Hisa, Chiaki Matsuzaki, Shinsuke Inuki, Yuna Ando +10 more
Gut Microbes
Abstract
Fermented foods demonstrate remarkable health benefits owing to probiotic bacteria or microproducts produced via bacterial fermentation. Fermented foods are produced by the fermentative action of several lactic acid bacteria, including <i>Leuconostoc mesenteroides</i>; however, the exact mechanism of action of these foods remains unclear. Here, we observed that prebiotics associated with <i>L. mesenteroides</i>-produced exopolysaccharides (EPS) demonstrate substantial host metabolic benefits. <i>L. mesenteroides</i>-produced EPS is an indigestible α-glucan, and intake of the purified form of EPS improved glucose metabolism and energy homeostasis through EPS-derived gut microbial short-chain fatty acids, and changed gut microbial composition. Our findings reveal an important mechanism that accounts for the effects of diet, prebiotics, and probiotics on energy homeostasis and suggests an approach for preventing lifestyle-related diseases by targeting bacterial EPS.
Extracted Claims
2 claims extracted from this paper into the knowledge graph
prebiotic exopolysaccharides improved glucose metabolism and energy homeostasis through EPS-derived gut microbial short-chain fatty acids
“intake of the purified form of EPS improved glucose metabolism and energy homeostasis through EPS-derived gut microbial short-chain fatty acids”
prebiotic exopolysaccharides changed gut microbial composition with intake of purified EPS
“changed gut microbial composition”