Literature DB >> 10742535

The hepatic vagal reception of intraportal GLP-1 is via receptor different from the pancreatic GLP-1 receptor.

M Nishizawa1, H Nakabayashi, K Kawai, T Ito, S Kawakami, A Nakagawa, A Niijima, K Uchida.   

Abstract

Glucagon-like peptide-1 (7-36)amide (tGLP-1), a representative humoral incretin, released into the portal circulation in response to a meal ingestion, exerts insulinotropic action through binding to the tGLP-1 receptor known to be a single molecular form thus far. We previously reported that the hepatic vagal nerve is receptive to intraportal tGLP-1, but not to non-insulinotropic full-length GLP-1-(1-37), through a mechanism mediated by specific receptor to the hormone. In the present study, we aimed to examine how modification of the receptor function alters this neural reception of tGLP-1, by using the specific agonist, exendin-4, and the specific antagonist, exendin (9-39)amide, of the receptor at doses known to exert their effects on the insulinotropic action of tGLP-1. Intraportal injection of 0.2 or 4.0 pmol tGLP-1, a periphysiological and pharmacological dose, respectively, facilitated significantly the afferent impulse discharge rate of the hepatic vagus in anesthetized rats, as reported previously. However, unexpectedly, intraportal injection of exendin-4 at a dose of 0.2 or 4.0 pmol, or of even 40.0 pmol, did not facilitate the afferents at all. Moreover, intraportal injection of exendin (9-39)amide at 100 times or more molar dose to that of tGLP-1, either 5 min before or 10 min after injection of 0.2 or 4.0 pmol tGLP-1, failed to modify the tGLP-1-induced facilitation of the afferents. The present results suggest that the neural reception of tGLP-1 involves a receptor mechanism distinct from that in the well-known humoral insulinotropic action.

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Year:  2000        PMID: 10742535     DOI: 10.1016/s0165-1838(99)00086-7

Source DB:  PubMed          Journal:  J Auton Nerv Syst        ISSN: 0165-1838


  22 in total

1.  Brain glucagon-like peptide-1 increases insulin secretion and muscle insulin resistance to favor hepatic glycogen storage.

Authors:  Claude Knauf; Patrice D Cani; Christophe Perrin; Miguel A Iglesias; Jean François Maury; Elodie Bernard; Fadilha Benhamed; Thierry Grémeaux; Daniel J Drucker; C Ronald Kahn; Jean Girard; Jean François Tanti; Nathalie M Delzenne; Catherine Postic; Rémy Burcelin
Journal:  J Clin Invest       Date:  2005-12       Impact factor: 14.808

Review 2.  Neuronal and intracellular signaling pathways mediating GLP-1 energy balance and glycemic effects.

Authors:  Matthew R Hayes
Journal:  Physiol Behav       Date:  2012-02-17

3.  Novel glucagon-like peptide-1 analog delivered orally reduces postprandial glucose excursions in porcine and canine models.

Authors:  Roy Eldor; Miriam Kidron; Yael Greenberg-Shushlav; Ehud Arbit
Journal:  J Diabetes Sci Technol       Date:  2010-11-01

4.  Synergistic effect of portal glucose and glucagon-like peptide-1 to lower systemic glucose and stimulate counter-regulatory hormones.

Authors:  V Ionut; K Hucking; I F Liberty; R N Bergman
Journal:  Diabetologia       Date:  2005-04-14       Impact factor: 10.122

5.  Role of the vagus in the reduced pancreatic exocrine function in copper-deficient rats.

Authors:  Tanja Babic; Ruchi Bhagat; Shuxia Wan; Kirsteen N Browning; Michael Snyder; Samuel R Fortna; R Alberto Travagli
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2012-12-28       Impact factor: 4.052

Review 6.  The effect of glucagon-like peptide 1 on cardiovascular risk.

Authors:  Jacob Sivertsen; Jaya Rosenmeier; Jens J Holst; Tina Vilsbøll
Journal:  Nat Rev Cardiol       Date:  2012-01-31       Impact factor: 32.419

7.  Incretins and amylin: neuroendocrine communication between the gut, pancreas, and brain in control of food intake and blood glucose.

Authors:  Matthew R Hayes; Elizabeth G Mietlicki-Baase; Scott E Kanoski; Bart C De Jonghe
Journal:  Annu Rev Nutr       Date:  2014-04-10       Impact factor: 11.848

8.  Insulin-like actions of glucagon-like peptide-1: a dual receptor hypothesis.

Authors:  Eva Tomas; Joel F Habener
Journal:  Trends Endocrinol Metab       Date:  2009-12-16       Impact factor: 12.015

9.  Effects of intraportal exenatide on hepatic glucose metabolism in the conscious dog.

Authors:  Dale S Edgerton; Zhibo An; Kathryn M S Johnson; Tiffany Farmer; Ben Farmer; Doss Neal; Alan D Cherrington
Journal:  Am J Physiol Endocrinol Metab       Date:  2013-05-14       Impact factor: 4.310

10.  Neonatal exendin-4 treatment reduces oxidative stress and prevents hepatic insulin resistance in intrauterine growth-retarded rats.

Authors:  Elisabeth L Raab; Patricia M Vuguin; Doris A Stoffers; Rebecca A Simmons
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2009-10-21       Impact factor: 3.619

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