Abstract
AbstractThe gut microbiota has pivotal roles in metabolic homeostasis and modulation of the intestinal environment. Notably, the administration of Lactobacillus spp. ameliorates diet-induced obesity in humans and mice. However, the mechanisms through which Lactobacillus spp. control host metabolic homeostasis remain unclear. Accordingly, in this study, we evaluated the physiological roles of Lactobacillus fermentum in controlling metabolic homeostasis in diet-induced obesity. Our results demonstrated that L. fermentum-potentiated oxidative phosphorylation in adipose tissue, resulting in increased energy expenditure to protect against diet-induced obesity. Indeed, oral administration of L. fermentum LM1016 markedly ameliorated glucose clearance and fatty liver in high-fat diet-fed mice. Moreover, administration of L. fermentum LM1016 markedly decreased inflammation and increased oxidative phosphorylation in gonadal white adipose tissue, as demonstrated by transcriptome analysis. Finally, metabolome analysis showed that metabolites derived from L. fermentum LM1016-attenuated adipocyte differentiation and inflammation in 3T3-L1 preadipocytes. These pronounced metabolic improvements suggested that the application of L. fermentum LM1016 could have clinical applications for the treatment of metabolic syndromes, such as diet-induced obesity.
Funder
Ministry of Science, ICT and Future Planning
Ministry of Science and ICT, Korean Government
Yonsei University | Yonsei University College of Medicine
Publisher
Springer Science and Business Media LLC
Subject
Clinical Biochemistry,Molecular Biology,Molecular Medicine,Biochemistry
Reference63 articles.
1. Chooi, Y. C., Ding, C. & Magkos, F. The epidemiology of obesity. Metabolism 92, 6–10 (2019).
2. Mokdad, A. H. et al. Burden of obesity in the Eastern Mediterranean region: findings from the Global Burden of Disease 2015 study. Int. J. Public Health 63, 165–176 (2018).
3. Cox, A. J., West, N. P. & Cripps, A. W. Obesity, inflammation, and the gut microbiota. Lancet Diabet. Endocrinol. 3, 207–215 (2015).
4. Esser, N., Legrand-Poels, S., Piette, J., Scheen, A. J. & Paquot, N.Inflammation as a link between obesity, metabolic syndrome and type 2 diabetes. Diabet. Res. Clin. Practice 105, 141–150 (2014).
5. Lee, I. S., Shin, G. & CHoUe, R. Shifts in diet from high fat to high carbohydrate improved levels of adipokines and pro-inflammatory cytokines in mice fed a high-fat diet. Endocr. J. 57, 39–50 (2009).
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