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Published on: April 28, 2016
Central pre-proglucagon derived peptides: opportunities for treatment of obesity
Philip J Larsen1, Niels Vrang, Mads Tang-Christensen
1Rheoscience, Glerupvej 2, 2610 Rødovre, Denmark. pjl@rheoscience.com
Abstract:
Modern societies have moved from famine to feast and obesity and its co-morbidities now sweep the world as a global epidemic. Numerous scientific laboratories and pharmaceutical companies have taken the challenge and are now exploiting novel molecular targets for treatment of obesity. The pre-proglucagon system constitutes interesting candidates as potential targets for new anti-obesity drugs. In the periphery, pre-proglucagon derived peptides, Glucagon-Like Peptide-1 (GLP-1), Glucagon-Like Peptide-2 (GLP-2) and oxyntomodulin (OXM) are involved in a wide variety of physiological functions, including glucose homeostasis, gastric emptying, intestinal growth, insulin secretion as well as the regulation of food intake. Peripheral administration of GLP-1 derivatives and analogues to both rodents and man have shown promising effects on food intake and body weight suggesting that such therapies constitute potential anti-obesity treatment. In the central nervous system, pre-proglucagon and hence GLP-1, GLP-2 and OXM are exclusively found in a small population of nerve cells in the nucleus of the solitary tract. These constitute a neural pathway linking the "viscero-sensory" brainstem to hypothalamic nuclei involved in energy homeostasis. Intracerebroventricular administration of all of the three derived peptides robustly decrease food intake. It is evident that central GLP-1 agonism probably in combination with GLP-2 and/or OXM agonism constitute a potential pharmacological tool to reduce food intake and maybe also enhance energy expenditure. This and other aspects of the current state of the role of central pre-proglucagon in energy homeostasis are reviewed.
Insights
The pre-proglucagon system, including Glucagon-Like Peptide-1 (GLP-1), GLP-2, and oxyntomodulin (OXM), shows promise for obesity treatment. Central administration of these peptides effectively reduces food intake, suggesting potential pharmacological applications for weight management.
Area of Science:
- Neuroscience
- Endocrinology
- Pharmacology
Background:
- Obesity is a global epidemic requiring novel therapeutic targets.
- The pre-proglucagon system and its derived peptides (GLP-1, GLP-2, OXM) play roles in energy homeostasis.
- Both peripheral and central actions of these peptides influence food intake and body weight.
Purpose of the Study:
- To review the role of the central pre-proglucagon system in energy homeostasis.
- To explore the potential of targeting this system for anti-obesity pharmacotherapy.
Main Methods:
- Review of existing scientific literature on pre-proglucagon peptides.
- Analysis of studies involving peripheral and central administration of GLP-1, GLP-2, and OXM.
- Examination of neural pathways linking the brainstem to hypothalamic nuclei involved in energy balance.
Main Results:
- Peripheral administration of GLP-1 analogues reduces food intake and body weight in rodents and humans.
- Central administration of GLP-1, GLP-2, and OXM into the brain robustly decreases food intake.
- A neural pathway exists from the brainstem to the hypothalamus involving these peptides.
Conclusions:
- Central agonism of GLP-1, potentially combined with GLP-2 and/or OXM, represents a promising pharmacological strategy to reduce food intake.
- Targeting the central pre-proglucagon system may offer a novel approach for managing obesity and enhancing energy expenditure.
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