Blueberry and Blackberry Anthocyanins Ameliorate Metabolic Syndrome by Modulating Gut Microbiota and Short-Chain Fatty Acids Metabolism in High-Fat Diet-Fed C57BL/6J Mice.
Lanlan DuHan LüYan ChenXiaohua YuTun-Yu JianHuifang ZhaoWenlong WuXiao-Qin DingJian ChenWeilin LiPublished in: Journal of agricultural and food chemistry (2023)
In this study, blueberry ( Vaccinium ssp. ) anthocyanins (VA) and blackberry ( Rubus L. ) anthocyanins (RA) were used to investigate the effects on metabolic syndrome (MetS) and the potential mechanisms. Importantly, all of the data presented in this study were obtained from experiments conducted on mice. As a result, VA and RA reduced body weight gain and fat accumulation while improving liver damage, inflammation, glucose, and lipid metabolism induced by a high-fat diet. Moreover, VA and RA regulated the gut microbiota composition, decreasing the pro-obesity and proinflammation bacteria taxa, such as the phylum Actinobacterium and the genera Allobaculum and Bifidobacterium , and increasing those negatively associated with obesity and inflammation, such as the phylum Bacteroidetes and the genera Prevotella and Oscillospira . Additionally, the supplementation with VA and RA reversed the elevated levels of valeric, caproic, and isovaleric acids observed in the high-fat diet (HFD) group, bringing them closer to the levels observed in the Chow group. This reversal indicated that alterations in the composition and abundance of gut microbiota may contribute to the restoration of short-chain fatty acids (SCFAs) levels. Additionally, PICRUSt2 exhibited that cyanamino acid metabolism and betalain biosynthesis might be the major metabolic pathways in the HVA group compared with the HFD group, while in the HRA group, it was the phosphotransferase system. These findings suggest that VA and RA can ameliorate MetS by modulating the gut microbiota and production of SCFAs.
Keyphrases
- high fat diet
- insulin resistance
- metabolic syndrome
- high fat diet induced
- adipose tissue
- weight gain
- fatty acid
- rheumatoid arthritis
- skeletal muscle
- oxidative stress
- disease activity
- type diabetes
- ankylosing spondylitis
- body mass index
- uric acid
- weight loss
- birth weight
- interstitial lung disease
- glycemic control
- microbial community
- transcription factor
- artificial intelligence
- wastewater treatment
- wild type