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Central dopamine D2 receptors regulate plasma glucose levels in mice.....pdf (1.56 MB)

Central dopamine D2 receptors regulate plasma glucose levels in mice through autonomic nerves

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posted on 2024-01-17, 16:52 authored by Hiroko Ikeda, Naomi Yonemochi, Risa Mikami, Manabu Abe, Meiko Kawamura, Rie Natsume, Kenji Sakimura, John WaddingtonJohn Waddington, Junzo Kamei
Recent evidence suggests that the central nervous system (CNS) regulates plasma glucose levels, but the underlying mechanism is unclear. The present study investigated the role of dopaminergic function in the CNS in regulation of plasma glucose levels in mice. I.c.v. injection of neither the dopamine D1 receptor agonist SKF 38393 nor the antagonist SCH 23390 influenced plasma glucose levels. In contrast, i.c.v. injection of both the dopamine D2 receptor agonist quinpirole and the antagonist l-sulpiride increased plasma glucose levels. Hyperglycemia induced by quinpirole and l-sulpiride was absent in dopamine D2 receptor knockout mice. I.c.v. injection of quinpirole and l-sulpiride each increased mRNA levels of hepatic glucose-6-phosphatase and phosphoenolpyruvate carboxykinase, which are the key enzymes for hepatic gluconeogenesis. Systemic injection of the β2 adrenoceptor antagonist ICI 118,551 inhibited hyperglycemia induced by l-sulpiride, but not by quinpirole. In contrast, hyperglycemia induced by quinpirole, but not by l-sulpiride, was inhibited by hepatic vagotomy. These results suggest that stimulation of central dopamine D2 receptors increases plasma glucose level by increasing hepatic glucose production through parasympathetic nerves, whereas inhibition of central dopamine D2 receptors increases plasma glucose level by increasing hepatic glucose production through sympathetic nerves.

Funding

JSPS KAKENHI Grant Number JP17K07065 (HI)

Ministry of Education, Science, Sports and Culture of Japan

History

Comments

The original article is available at https://www.nature.com/

Published Citation

Ikeda H. et al. Central dopamine D2 receptors regulate plasma glucose levels in mice through autonomic nerves. Sci Rep. 2020;10(1):22347

Publication Date

18 December 2020

PubMed ID

33339892

Department/Unit

  • School of Pharmacy and Biomolecular Sciences

Research Area

  • Neurological and Psychiatric Disorders

Publisher

Nature Publishing Group

Version

  • Published Version (Version of Record)