Disruption of the Dopamine D2 Receptor Impairs Insulin Secretion and Causes Glucose Intolerance

Author:

García-Tornadú Isabel1,Ornstein Ana M.1,Chamson-Reig Astrid2,Wheeler Michael B.3,Hill David J.2,Arany Edith2,Rubinstein Marcelo45,Becu-Villalobos Damasia1

Affiliation:

1. Instituto de Biología y Medicina Experimental (I.G.-T., A.M.O., D.B.-V.), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires 1428, Argentina

2. Lawson Health Research Institute (A.C.-R., D.J.H., E.A.), London, Ontario, Canada N6A 4V2

3. Departments of Physiology and Medicine (M.B.W.), Endocrinology and Diabetes Research Group, University of Toronto, Ontario, Canada M5S 1A8

4. Instituto de Investigaciones en Ingeniería Genética y Biología Molecular (M.R.), CONICET, Buenos Aires 2490, Argentina

5. Departamento de Fisiología y Biología Molecular y Celular (M.R.), Facultad de Ciencias Exactas y Naturales, University of Buenos Aires, Buenos Aires 1428, Argentina

Abstract

The relationship between antidopaminergic drugs and glucose has not been extensively studied, even though chronic neuroleptic treatment causes hyperinsulinemia in normal subjects or is associated with diabetes in psychiatric patients. We sought to evaluate dopamine D2 receptor (D2R) participation in pancreatic function. Glucose homeostasis was studied in D2R knockout mice (Drd2−/−) mice and in isolated islets from wild-type and Drd2−/− mice, using different pharmacological tools. Pancreas immunohistochemistry was performed. Drd2−/− male mice exhibited an impairment of insulin response to glucose and high fasting glucose levels and were glucose intolerant. Glucose intolerance resulted from a blunted insulin secretory response, rather than insulin resistance, as shown by glucose-stimulated insulin secretion tests (GSIS) in vivo and in vitro and by a conserved insulin tolerance test in vivo. On the other hand, short-term treatment with cabergoline, a dopamine agonist, resulted in glucose intolerance and decreased insulin response to glucose in wild-type but not in Drd2−/− mice; this effect was partially prevented by haloperidol, a D2R antagonist. In vitro results indicated that GSIS was impaired in islets from Drd2−/− mice and that only in wild-type islets did dopamine inhibit GSIS, an effect that was blocked by a D2R but not a D1R antagonist. Finally, immunohistochemistry showed a diminished pancreatic β-cell mass in Drd2−/− mice and decreased β-cell replication in 2-month-old Drd2−/− mice. Pancreatic D2Rs inhibit glucose-stimulated insulin release. Lack of dopaminergic inhibition throughout development may exert a gradual deteriorating effect on insulin homeostasis, so that eventually glucose intolerance develops.

Publisher

The Endocrine Society

Subject

Endocrinology

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