4.7 Article

Total Saponins Isolated from Corni Fructus via Ultrasonic Microwave-Assisted Extraction Attenuate Diabetes in Mice

期刊

FOODS
卷 10, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/foods10030670

关键词

Cornus officinalis; saponins; ultrasonic extraction; microwave extraction; response surface methodology; type 2 diabetes mellitus

资金

  1. National Key Technologies Research and Development Program for Modernization of Traditional Chinese Medicine [2017YFC1701302]
  2. Fundamental Research Funds for the Central Universities [GK201706012]
  3. major Project of Shaanxi Province, China [2020ZDLSF05-10]
  4. Central University Innovation Team Project [GK202001006]

向作者/读者索取更多资源

Corni Fructus saponins extracted from Corni Fructus could potentially be a promising functional food ingredient for improving diabetes by regulating insulin-related signaling pathways and ameliorating glucose and lipid metabolism, inflammation, oxidative stress, and organ damages in diabetic mice.
Saponins have been extensively used in the food and pharmaceutical industries because of their potent bioactive and pharmacological functions including hypolipidemic, anti-inflammatory, expectorant, antiulcer and androgenic properties. A lot of saponins-containing foods are recommended as nutritional supplements for diabetic patients. As a medicine and food homologous material, Corni Fructus (CF) contains various active ingredients and has the effect of treating diabetes. However, whether and how CF saponins attenuate diabetes is still largely unknown. Here, we isolated total saponins from CF (TSCF) using ultrasonic microwave-assisted extraction combined with response surface methodology. The extract was further purified by a nonpolar copolymer styrene type macroporous resin (HPD-300), with the yield of TSCF elevated to 13.96 mg/g compared to 10.87 mg/g obtained via unassisted extraction. When used to treat high-fat diet and streptozotocin-induced diabetic mice, TSCF significantly improved the glucose and lipid metabolisms of T2DM mice. Additionally, TSCF clearly ameliorated inflammation and oxidative stress as well as pancreas and liver damages in the diabetic mice. Mechanistically, TSCF potently regulated insulin receptor (INSR)-, glucose transporter 4 (GLUT4)-, phosphatidylinositol 3-kinase (PI3K)-, and protein kinase B (PKB/AKT)-associated signaling pathways. Thus, our data collectively demonstrated that TSCF could be a promising functional food ingredient for diabetes improvement.

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