Abstract
In addition to its pivotal role in psychosocial behavior, the hypothalamic neuropeptide oxytocin contributes to metabolic control by suppressing eating behavior. Its involvement in glucose homeostasis is less clear, although pilot experiments suggest that oxytocin improves glucose homeostasis. We assessed the effect of intranasal oxytocin (24 IU) administered to 29 healthy, fasted male subjects on glucose homeostasis measured by means of an oral glucose tolerance test. Parameters of glucose metabolism were analyzed according to the oral minimal model. Oxytocin attenuated the peak excursion of plasma glucose and augmented the early increases in insulin and C-peptide concentrations in response to the glucose challenge, while slightly blunting insulin and C-peptide peaks. Oral minimal model analyses revealed that oxytocin compared with placebo induced a pronounced increase in b-cell responsivity (PHItotal) that was largely due to an enhanced dynamic response (PHId), and a more than twofold improvement in glucose tolerance (disposition index). Adrenocorticotropic hormone (ACTH), cortisol, glucagon, and nonesterified fatty acid (NEFA) concentrations were not or were only marginally affected. These results indicate that oxytocin plays a significant role in the acute regulation of glucose metabolism in healthy humans and render the oxytocin system a potential target of antidiabetic treatment.
| Originalsprache | Englisch |
|---|---|
| Zeitschrift | Diabetes |
| Jahrgang | 66 |
| Ausgabenummer | 2 |
| Seiten (von - bis) | 264-271 |
| Seitenumfang | 8 |
| ISSN | 0012-1797 |
| DOIs | |
| Publikationsstatus | Veröffentlicht - 01.02.2017 |
Fördermittel
This study was supported by grants from the Deutsche Forschungsgemeinschaft (SFB/Transregio 134), the German Federal Ministry of Education and Research (BMBF) to the German Center for Diabetes Research (DZD e.V., 01GI0925), and the Helmholtz Alliance Imaging and Curing Environmental Metabolic Diseases (ICEMED), through the Initiative and Networking Fund of the Helmholtz Association.
| Träger | Trägernummer |
|---|---|
| Helmholtz Alliance Imaging and Curing Environmental Metabolic Diseases | |
| Deutsche Forschungsgemeinschaft | SFB/Transregio 134 |
| Bundesministerium für Bildung und Forschung | 01GI0925 |
UN SDGs
Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung
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SDG 3 – Gesundheit und Wohlergehen
Strategische Forschungsbereiche und Zentren
- Forschungsschwerpunkt: Gehirn, Hormone, Verhalten - Center for Brain, Behavior and Metabolism (CBBM)
DFG-Fachsystematik
- 2.22-17 Endokrinologie, Diabetologie, Metabolismus
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SFB/Transregio TRR 134: Essverhalten - Homöostase und Belohnungssysteme
Lehnert, H. (Sprecher*in), Brüning, J. C. (Projektleiter*in (PI)), Scholz, H. (Projektleiter*in (PI)), Kloppenburg, P. (Projektleiter*in (PI)), Hausen, A. C. (Projektleiter*in (PI)), Jöhren, O. (Projektleiter*in (PI)), Schulz, C. (Projektleiter*in (PI)), Schwaninger, M. (Projektleiter*in (PI)), Wunderlich, F. T. (Projektleiter*in (PI)), Schmid, S. (Projektleiter*in (PI)), Oster, H. (Projektleiter*in (PI)), Klement, J. (Projektleiter*in (PI)), Ott, V. (Projektleiter*in (PI)), Stephan, K. E. (Projektleiter*in (PI)), Tittgemeyer, M. (Projektleiter*in (PI)), Oltmanns, K. (Projektleiter*in (PI)), Münte, T. (Projektleiter*in (PI)), Tronnier, V. M. (Projektleiter*in (PI)), Schweiger, U. (Projektleiter*in (PI)), Brassen, S. (Projektleiter*in (PI)), Büchel, C. (Projektleiter*in (PI)), Peters, J. (Projektleiter*in (PI)), Schilbach, L. (Projektleiter*in (PI)), Anders, S. (Projektleiter*in (PI)), Martinetz, T. (Projektleiter*in (PI)), Park, S. Q. (Projektleiter*in (PI)), Brabant, E. G. (Projektleiter*in (PI)), Kasten, M. (Projektleiter*in (PI)), Klein, C. (Projektleiter*in (PI)) & Krämer, U. (Projektleiter*in (PI))
01.01.14 → 31.12.18
Projekt: DFG Verbundprojekte › DFG Sonderforschungsbereiche / Transregios (SFB/TR)
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