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The VIP/VPAC1R Pathway Regulates Energy and Glucose Homeostasis by Modulating GLP-1, Glucagon, Leptin and PYY Levels in Mice.
Sanford, Daniel; Luong, Leon; Vu, John P; Oh, Suwan; Gabalski, Arielle; Lewis, Michael; Pisegna, Joseph R; Germano, Patrizia.
Afiliação
  • Sanford D; Research Service, Veterans Affairs Greater Los Angeles Healthcare System, Los Angeles, CA 90073, USA.
  • Luong L; Digestive Diseases Research Center (CURE), Department of Medicine, University of California, Los Angeles, CA 90073, USA.
  • Vu JP; Research Service, Veterans Affairs Greater Los Angeles Healthcare System, Los Angeles, CA 90073, USA.
  • Oh S; Digestive Diseases Research Center (CURE), Department of Medicine, University of California, Los Angeles, CA 90073, USA.
  • Gabalski A; Research Service, Veterans Affairs Greater Los Angeles Healthcare System, Los Angeles, CA 90073, USA.
  • Lewis M; Digestive Diseases Research Center (CURE), Department of Medicine, University of California, Los Angeles, CA 90073, USA.
  • Pisegna JR; Research Service, Veterans Affairs Greater Los Angeles Healthcare System, Los Angeles, CA 90073, USA.
  • Germano P; Digestive Diseases Research Center (CURE), Department of Medicine, University of California, Los Angeles, CA 90073, USA.
Biology (Basel) ; 11(3)2022 Mar 11.
Article em En | MEDLINE | ID: mdl-35336804
Vasoactive Intestinal Peptide binds with high affinity to VPAC1R and VPAC2R, thus regulating key physiologic functions. Previously, we documented in VIP-/- mice a leaner body phenotype and altered metabolic hormones. Past reports described in VPAC2-/- mice impaired circadian rhythm, reduced food intake, and altered metabolism. To better define the effects of VPAC1R on body phenotype, energy/glucose homeostasis, and metabolism, we conducted a 12-week study in a VPAC1R null model. Our results reveal that VPAC1-/- mice experienced significant metabolic alterations during the dark cycle with greater numbers of feeding bouts (p = 0.009), lower Total Energy Expenditure (p = 0.025), VO2 (p = 0.029), and VCO2 (p = 0.016); as well as during the light cycle with lower Total Energy Expenditure (p = 0.04), VO2 (p = 0.044), and VCO2 (p = 0.029). Furthermore, VPAC1-/- mice had significantly higher levels of GLP-1 and PYY during fasting, and higher levels of GLP-1, glucagon leptin and PYY during postprandial conditions. In addition, VPAC1-/- mice had lower levels of glucose at 60' and 120', as assessed by insulin tolerance test. In conclusion, this study supports a key role for VPAC1R in the regulation of body glucose/energy homeostasis and metabolism.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article