Suppression of Prolactin Secretion Partially Explains the Antidiabetic Effect of Bromocriptine in ob/ob Mice

Author:

Furigo Isadora C1ORCID,Suzuki Miriam F2ORCID,Oliveira João E2ORCID,Ramos-Lobo Angela M1,Teixeira Pryscila D S1,Pedroso João A1,de Alencar Amanda1,Zampieri Thais T1,Buonfiglio Daniella C1,Quaresma Paula G F13,Prada Patricia O4,Bartolini Paolo2,Soares Carlos R J2ORCID,Donato Jose1ORCID

Affiliation:

1. Department of Physiology and Biophysics, Institute of Biomedical Sciences, University of São Paulo, São Paulo, SP, Brazil

2. Biotechnology Center, Instituto de Pesquisas Energéticas e Nucleares, IPEN–CNEN/SP, São Paulo, SP, Brazil

3. Department of Internal Medicine, State University of Campinas, Campinas, São Paulo, SP, Brazil

4. School of Applied Sciences, State University of Campinas, Limeira, São Paulo, SP, Brazil

Abstract

Abstract Previous studies have shown that bromocriptine mesylate (Bromo) lowers blood glucose levels in adults with type 2 diabetes mellitus; however, the mechanism of action of the antidiabetic effects of Bromo is unclear. As a dopamine receptor agonist, Bromo can alter brain dopamine activity affecting glucose control, but it also suppresses prolactin (Prl) secretion, and Prl levels modulate glucose homeostasis. Thus, the objective of the current study was to investigate whether Bromo improves insulin sensitivity via inhibition of Prl secretion. Male and female ob/ob animals (a mouse model of obesity and insulin resistance) were treated with Bromo and/or Prl. Bromo-treated ob/ob mice exhibited lower serum Prl concentration, improved glucose and insulin tolerance, and increased insulin sensitivity in the liver and skeletal muscle compared with vehicle-treated mice. Prl replacement in Bromo-treated mice normalized serum Prl concentration without inducing hyperprolactinemia. Importantly, Prl replacement partially reversed the improvements in glucose homeostasis caused by Bromo treatment. The effects of the Prl receptor antagonist G129R-hPrl on glucose homeostasis were also investigated. We found that central G129R-hPrl infusion increased insulin tolerance of male ob/ob mice. In summary, our findings indicate that part of Bromo effects on glucose homeostasis are associated with decrease in serum Prl levels. Because G129R-hPrl treatment also improved the insulin sensitivity of ob/ob mice, pharmacological compounds that inhibit Prl signaling may represent a promising therapeutic approach to control blood glucose levels in individuals with insulin resistance.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

The Endocrine Society

Subject

Endocrinology

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