Hypoglycemic Effects and Mechanisms of Polyphenols From Myrica rubra Pomace in Type 2 Diabetes (db/db) Mice
文献类型: 外文期刊
第一作者: Chang, Guoli
作者: Chang, Guoli;Tian, Siyi;Luo, Xinyu;Xiang, Yannan;Cai, Chenggang;Zhu, Ruiyu;Cai, Haiying;Yang, Hailong;Gao, Haiyan
作者机构:
关键词: gut microbiota; hypoglycemic mechanism; Myrica rubra; polyphenol; Type 2 diabetes
期刊名称:MOLECULAR NUTRITION & FOOD RESEARCH ( 影响因子:4.2; 五年影响因子:5.0 )
ISSN: 1613-4125
年卷期: 2025 年 69 卷 10 期
页码:
收录情况: SCI
摘要: The Myrica rubra pomace polyphenols (MRPP) were used to study their hypoglycemic effects and mechanisms using Type 2 diabetes (T2D) (db/db) mice as the model. The results showed that the oral administration of MRPP (low-dose myricitrin, 50 mg/kg BW by gavage; high-dose myricitrin, 250 mg/kg BW by gavage; and Myrica rubra pomace, 500 mg/kg BW by gavage) for 4 weeks significantly reduced fasting blood glucose, glycated serum protein, serum insulin, and insulin resistance index in mice, as well as the dyslipidemia in mice was improved. MRPP was able to improve the structural morphology of hepatocytes and pancreatic beta-cells in diabetic mice. Its hypoglycemic mechanism may involve the upregulation of GLUT-4 and IRS-1 genes expression in the PI3K and AMPK signaling pathways, downregulation of GSK-3 beta, AMPK, PI3K, and AKT genes expression, and enhancement of the activity of enzymes related to glycogen synthesis and glucose metabolism. Research findings on 16S rRNA suggest that MRPP has the ability to alter the composition of the gut microbiota, impede the growth of harmful bacteria, and foster the growth of beneficial bacteria. Therefore, MRPP was capable of reshaping the specific gut microbial community and supporting its application as a novel supplement in functional foods for the treatment of T2D.
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