(2018) GABA dramatically improves glucose tolerance in streptozotocin-induced diabetic rats fed with high-fat diet. European Journal of Pharmacology. pp. 75-84. ISSN 0014-2999
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Abstract
Skeletal muscle, hepatic insulin resistance, and beta cell dysfunction are the characteristic pathophysiological features of type 2 diabetes mellitus. GABA has an important role in pancreatic islet cells. The present study attempted to clarify the possible mechanism of GABA to improve glucose tolerance in a model of type 2 diabetes mellitus in rats. Fifty Wistar rats were divided into five groups: NDC that was fed the normal diet, CD which received a high-fat diet with streptozotocin, CD-GABA animals that received GABA via intraperitoneal injection, plus CD-Ins1 and CD-Ins2 groups which were treated with low and high doses of insulin, respectively. Body weight and blood glucose were measured weekly. Intraperitoneal glucose tolerance test (IPGTT), insulin tolerance test (ITT), urine volume, amount of water drinking, and food intake assessments were performed monthly. The hyperinsulinemic euglycemic clamp was done for assessing insulin resistance. Plasma insulin and glucagon were measured. Abdominal fat was measured. Glucagon receptor, Glucose 6 phosphatase, Phosphoenolpyr uvate carboxykinase genes expression were evaluated in liver and Glucose transporter 4 (GLUT4) genes expression and protein translocation were evaluated in the muscle. GABA or insulin therapy improved blood glucose, insulin level, IPGTT, ITT, gluconeogenesis pathway, Glucagon receptor, body weight and body fat in diabetic rats. GLUT4 gene and protein expression increased. GABA whose beneficial effect was comparable to that of insulin, also increased glucose infusion rate during an euglycemic clamp. GABA could improve insulin resistance via rising GLUT4 and also decreasing the gluconeogenesis pathway and Glucagon receptor gene expression.
Item Type: | Article |
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Keywords: | diabetes gaba insulin resistance hyperinsulinemic euglycemic clamp gluconeogenesis glucagon receptor insulin-resistance treated rat beta-cells expression model inhibition islet extract glut4 dpp-4 |
Subjects: | QU Biochemistry. Cell Biology and Genetics QY Clinical Laboratory Pathology |
Divisions: | Faculty of Medicine > Department of Basic Science > Department of Molecular Medicine and Genetics Faculty of Medicine > Department of Basic Science > Department of Physiology Faculty of Medicine > Departments of Clinical Sciences > Department of Pathology |
Page Range: | pp. 75-84 |
Journal or Publication Title: | European Journal of Pharmacology |
Journal Index: | ISI |
Volume: | 826 |
Identification Number: | https://doi.org/10.1016/j.ejphar.2018.01.047 |
ISSN: | 0014-2999 |
Depositing User: | Zahra Otroj |
URI: | http://eprints.mui.ac.ir/id/eprint/6978 |
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