Literature DB >> 33396905

Steviol Glycosides Supplementation Affects Lipid Metabolism in High-Fat Fed STZ-Induced Diabetic Rats.

Jakub Michał Kurek1, Ewelina Król1, Zbigniew Krejpcio1.   

Abstract

A number of health-promoting properties of Stevia rebaudiana Bertoni and its glycosides, including the antihyperglycemic activity, have been found. The mechanisms of the antidiabetic action of stevia have not been fully understood. The aim of this study was to evaluate the effects of supplementary steviol glycosides on high-fat fed streptozotocin-induced diabetic rats with particular attention to lipid metabolism. The experiment was conducted on 70 male Wistar rats, of which 60 were fed a high-fat diet for 8 weeks followed by intraperitoneal injection of streptozotocin, to induce type 2 diabetes. Afterwards, rats were divided into six groups and fed a high-fat diet supplemented with pure stevioside or rebaudioside A, at two levels (500 or 2500 mg/kg body weight (b.w.)) for 5 weeks. Three additional groups: diabetic untreated, diabetic treated with metformin, and healthy, served as respective controls. Blood and dissected internal organs were collected for hematological, biochemical, and histopathological tests. It was found that dietary supplementation with steviol glycosides did not affect blood glucose, insulin, and insulin resistance indices, antioxidant biomarkers, but normalized hyperlipidemia and affected the appetite, as well as attenuated blood liver and kidney function indices, and reduced tissular damage in diabetic rats. Steviol glycosides normalize lipid metabolism and attenuate internal organs damage in diabetes.

Entities:  

Keywords:  diabetes; high-fat diet; rats; steviol glycosides; supplementation

Year:  2020        PMID: 33396905     DOI: 10.3390/nu13010112

Source DB:  PubMed          Journal:  Nutrients        ISSN: 2072-6643            Impact factor:   5.717


  4 in total

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3.  Slowly Digestible Carbohydrate Diet Ameliorates Hyperglycemia and Hyperlipidemia in High-Fat Diet/Streptozocin-Induced Diabetic Mice.

Authors:  Yu-Zhong Chen; Jia Gu; Wei-Ting Chuang; Ya-Fang Du; Lin Zhang; Meng-Lan Lu; Jia-Ying Xu; Hao-Qiu Li; Yan Liu; Hao-Tian Feng; Yun-Hong Li; Li-Qiang Qin
Journal:  Front Nutr       Date:  2022-04-15

4.  Highly efficient production of rebaudioside D enabled by structure-guided engineering of bacterial glycosyltransferase YojK.

Authors:  Baodang Guo; Xiaodong Hou; Yan Zhang; Zhiwei Deng; Qian Ping; Kai Fu; Zhenbo Yuan; Yijian Rao
Journal:  Front Bioeng Biotechnol       Date:  2022-08-25
  4 in total

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