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(Reference retrieved automatically from Web of Science through information on FAPESP grant and its corresponding number as mentioned in the publication by the authors.)

Anti-obesogenic and hypolipidemic effects of a glucagon-like peptide-1 receptor agonist derived from the saliva of the Gila monster

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Author(s):
Alves, Patricia Lucio ; Francis Abdalla, Fernando Mauricio ; Alponti, Rafaela Fadoni ; Silveira, Paulo Flavio
Total Authors: 4
Document type: Journal article
Source: Toxicon; v. 135, p. 1-11, SEP 1 2017.
Web of Science Citations: 1
Abstract

Introduction: Glucagon-like peptide-1(GLP-1) receptor (R) agonists are a class of incretin mimetic drugs that have been used for the treatment of type 2 diabetes mellitus and also considered strong candidates for the treatment of obesity. The original prototypical drug in this class is the exenatide, a synthetic peptide with the same structure as the native molecule, exendin-4, found in the saliva of the Gila monster (Heloderma suspectum suspectum lizard). Objectives: To identify and compare the anti-obesogenic, antidyslipidemic and antidiabetogenic effects of agonism in GLP-1R by exenatide on two distinct models of obesity: induced by hypothalamic injury (MSG) or high-calorie diet (DIO). Methods: To obtain MSG, neonatal rats were daily subcutaneously injected with 4 g monosodium glutamate/kg, for 10 consecutive days. To obtain DID, 72-75 days old rats received hyperlipid food and 30% sucrose for drinking up to 142-145 days old. Untreated healthy rats with the same age were used as control. General biometric and metabolic parameters were measured. Results: MSG was characterized by decreased naso-anal length, food and fluid intake, plasma protein and glucose decay rate per minute after insulin administration (K-ITT), as well as increased Lee index (body mass(0.33)/naso-anal length), mass of retroperitoneal and periepididymal fat pads, glycemia, triglycerides (TG), LDL and VLDL. Exenatide ameliorated K-ITT and food and fluid intake, and it also restored glycemia in MSG. DIO was characterized by glucose intolerance, increased body mass, Lee index, fluid intake, mass of retroperitoneal and periepididymal fat pads, glycemia, glycated hemoglobin (HbAlc), TG, VLDL and total cholesterol, as well as decreased food intake and K-ITT. Exenatide restored glycemia, HbA1c, TG, VLDL, total cholesterol and body mass, and it also ameliorated food and fluid intake, K-ITT and mass of retroperitoneal fat pad in DIO. Conclusions: The hypothalamic injury and the high-calorie diet induce dyslipidemia and glycemic dysregulation in addition to obesity in rats. The usual therapeutic dose of exenatide in humans is anti-diabetogenic in both these obesity models, but is anti-obesogenic and hypolipidemic only in diet-induced obesity. Agonists of GLP-1R are promising anti-obesogenic and antidyslipidemic drugs in the early stages of the obesity, in which the integrity of the nervous system was unaffected. (C) 2017 Elsevier Ltd. All rights reserved. (AU)

FAPESP's process: 12/12105-9 - COMPARISON OF METABOLIC PROFILE, CHARACTERISTICS OF HIPPOCAMPAL MUSCARINIC RECEPTORS AND FUNCTIONALITY OF LANGERHANS ISLETS UNDER EFFECTS OF EXENATIDE IN EXPERIMENTAL MODELS OF DIABETES MELLITUS AND OBESITY IN RATS.
Grantee:Paulo Flávio Silveira
Support type: Regular Research Grants