Glucose Sensing Mediated by Portal Glucagon-Like Peptide 1 Receptor Is Markedly Impaired in Insulin-Resistant Obese Animals

Author:

Malbert Charles-Henri1ORCID,Chauvin Alain2,Horowitz Michael3,Jones Karen L.3ORCID

Affiliation:

1. Aniscan Unit, Department of Human Nutrition, INRAE, Saint-Gilles, France

2. UEPR Unit, Department of Animal Physiology, INRAE, Saint-Gilles, France

3. Centre of Research Excellence in Translating Nutritional Science to Good Health, Adelaide Medical School, The University of Adelaide, Adelaide, South Australia, Australia

Abstract

The glucose portal sensor informs the brain of changes in glucose inflow through vagal afferents that require an activated glucagon-like peptide 1 receptor (GLP-1r). The GLP-1 system is known to be impaired in insulin-resistant conditions, and we sought to understand the consequences of GLP-1 resistance on glucose portal signaling. GLP-1–dependent portal glucose signaling was identified, in vivo, using a novel 68Ga-labeled GLP-1r positron-emitting probe that supplied a quantitative in situ tridimensional representation of the portal sensor with specific reference to the receptor density expressed in binding potential units. It also served as a map for single-neuron electrophysiology driven by an image-based abdominal navigation. We determined that in insulin-resistant animals, portal vagal afferents failed to inhibit their spiking activity during glucose infusion, a GLP-1r–dependent function. This reflected a reduction in portal GLP-1r binding potential, particularly between the splenic vein and the entrance of the liver. We propose that insulin resistance, through a reduction in GLP-1r density, leads to functional portal desensitization with a consequent suppression of vagal sensitivity to portal glucose.

Funder

BPI France

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

Reference74 articles.

1. Gut-brain glucose signaling in energy homeostasis;Soty;Cell Metab,2017

2. The integrative role of CNS fuel-sensing mechanisms in energy balance and glucose regulation;Sandoval;Annu Rev Physiol,2008

3. Effect of portal glucose sensing on systemic glucose levels in SD and ZDF rats;Pal;PLoS One,2016

4. Anatomy and function of sensory hepatic nerves;Berthoud;Anat Rec A Discov Mol Cell Evol Biol,2004

5. Détection du glucose sanguin par le système nerveux: pourquoi, où, comment;Mithieux;Ann Biol Clin (Paris),2020

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