Literature DB >> 19846180

Inhibitory effects of ursolic acid on hepatic polyol pathway and glucose production in streptozotocin-induced diabetic mice.

Sun-Mi Jang1, Myung-Joo Kim, Myung-Sook Choi, Eun-Young Kwon, Mi-Kyung Lee.   

Abstract

The effects of ursolic acid on the polyol pathway and glucose homeostasis-related metabolism were examined in the livers of streptozotocin (STZ)-induced diabetic mice fed a high-fat (37% calories from fat) diet for 4 weeks. Male mice were divided into nondiabetic, diabetic control, and diabetic-ursolic acid (0.05% wt/wt) groups. Diabetes was induced by the injection of STZ (200 mg/kg body weight, intraperitoneally). Although an ursolic acid supplement lowered the blood glucose level, it did not affect the plasma leptin and adiponectin levels. The present study shows that the blood glucose levels have a positive correlation with the hepatic sorbitol dehydrogenase activities (r = 0.39, P < .05). Ursolic acid significantly inhibited sorbitol dehydrogenase activity as well as aldose reductase activity in the liver. The supplementation of ursolic acid significantly increased glucokinase activity, while decreasing glucose-6-phosphatase activity in the livers of STZ-induced diabetic mice. Ursolic acid significantly elevated the hepatic glycogen content compared with the diabetic control group. Supplementation with ursolic acid significantly lowered the plasma total cholesterol, free fatty acid, and triglyceride concentrations compared with the diabetic control group, whereas it normalized hepatic triglyceride concentration. A negative correlation was found between the hepatic triglyceride concentration and blood glucose levels (r = -0.50, P < .01) in regard to insulin-dependent diabetic mice. The hepatic fatty acid synthase activity was significantly lower in the ursolic acid group than in the diabetic control group, whereas hepatic fatty acid beta-oxidation and carnitine palmitoyltransferase activities were significantly higher. These results indicate that ursolic acid may be beneficial in preventing diabetic complications by improving the polyol pathway as well as the lipid metabolism and that it can function as a potential modulator of hepatic glucose production, which is partly mediated by up-regulating glucose utilization and glycogen storage and down-regulating glyconeogenesis in the liver. Copyright 2010 Elsevier Inc. All rights reserved.

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Year:  2009        PMID: 19846180     DOI: 10.1016/j.metabol.2009.07.040

Source DB:  PubMed          Journal:  Metabolism        ISSN: 0026-0495            Impact factor:   8.694


  12 in total

1.  Ursolic acid protects diabetic mice against monocyte dysfunction and accelerated atherosclerosis.

Authors:  Sarah L Ullevig; Qingwei Zhao; Debora Zamora; Reto Asmis
Journal:  Atherosclerosis       Date:  2011-06-17       Impact factor: 5.162

2.  S-allylcysteine Improves Streptozotocin-Induced Alterations of Blood Glucose, Liver Cytochrome P450 2E1, Plasma Antioxidant System, and Adipocytes Hormones in Diabetic Rats.

Authors:  Ganapathy Saravanan; Ponnusamy Ponmurugan
Journal:  Int J Endocrinol Metab       Date:  2013-10-01

3.  Protective mechanisms of loquat leaf extract and ursolic acid against diabetic pro-inflammation.

Authors:  Min Kyung Hyun; Dae Hyun Kim; Chan Hum Park; Sang Gyun Noh; Sihyun Choi; Jae Yong Lee; Ji Hye Choi; Duhyeon Park; Yeon Ja Choi; Hae Young Chung
Journal:  J Mol Med (Berl)       Date:  2022-08-13       Impact factor: 5.606

Review 4.  Novel nutraceutic therapies for the treatment of metabolic syndrome.

Authors:  Esperanza Martínez-Abundis; Miriam Méndez-Del Villar; Karina G Pérez-Rubio; Laura Y Zuñiga; Marisol Cortez-Navarrete; Alejandra Ramírez-Rodriguez; Manuel González-Ortiz
Journal:  World J Diabetes       Date:  2016-04-10

5.  Ursolic acid increases glucose uptake through the PI3K signaling pathway in adipocytes.

Authors:  Yonghan He; Wen Li; Ying Li; Shuocheng Zhang; Yanwen Wang; Changhao Sun
Journal:  PLoS One       Date:  2014-10-20       Impact factor: 3.240

6.  Hepato-renal protective effects of hydroethanolic extract of Senna alata on enzymatic and nonenzymatic antioxidant systems in streptozotocin induced diabetic rats.

Authors:  Mohanasundaram Sugumar; D Victor Arokia Doss; P N Prasad Maddisetty
Journal:  Integr Med Res       Date:  2016-06-28

Review 7.  Biochemical basis of the antidiabetic activity of oleanolic acid and related pentacyclic triterpenes.

Authors:  Jose M Castellano; Angeles Guinda; Teresa Delgado; Mirela Rada; Jose A Cayuela
Journal:  Diabetes       Date:  2013-06       Impact factor: 9.461

8.  Inhibitory effects and actions of pentacyclic triterpenes upon glycation.

Authors:  Mei-Chin Yin
Journal:  Biomedicine (Taipei)       Date:  2015-08-11

9.  Transcriptome Profiles Using Next-Generation Sequencing Reveal Liver Changes in the Early Stage of Diabetes in Tree Shrew (Tupaia belangeri chinensis).

Authors:  Xiaoyun Wu; Haibo Xu; Zhiguo Zhang; Qing Chang; Shasha Liao; Linqiang Zhang; Yunhai Li; Dongdong Wu; Bin Liang
Journal:  J Diabetes Res       Date:  2016-03-16       Impact factor: 4.011

Review 10.  Oleanolic Acid: Extraction, Characterization and Biological Activity.

Authors:  José M Castellano; Sara Ramos-Romero; Javier S Perona
Journal:  Nutrients       Date:  2022-01-31       Impact factor: 5.717

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