Gut hormone PYY3-36 physiologically inhibits food intake
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Summary
Peripheral injection of PYY3-36 in rats inhibits food intake and reduces weight gain and suggests that the anorectic effect requires the Y2R, a putative inhibitory presynaptic receptor in the arcuate nucleus of the hypothalamus.
- Type
- book
- Published
- 2002-08-08
- Cited by
- 2,423
- References
- 35
- OpenAlex
- https://openalex.org/W12167864
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4300829
Keywords
Psychology, Mathematics education, Political science
References
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- The Mouse Brain in Stereotaxic Coordinates
- Central nervous system control of food intake
- Genetics of body-weight regulation
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- Melanocortin-4 receptor is required for acute homeostatic responses to increased dietary fat
- The human immunodeficiency virus type 1 Vif protein modulates the postpenetration stability of viral nucleoprotein complexes
- Fv-1 restriction and its effects on murine leukemia virus integration in vivo and in vitro
- Exendin-4 reduces fasting and postprandial glucose and decreases energy intake in healthy volunteers.
- Leptin-induced decrease in food intake is not associated with changes in gastric emptying in lean mice.
- Neuropeptide Y Y5 receptor protein in the cortical/limbic system and brainstem of the rat: expression on gamma-aminobutyric acid and corticotropin-releasing hormone neurons.
- Mutations affecting transition-state stabilization by residues coordinating zinc at the active site of cytidine deaminase.
- A novel neuropeptide Y analog, N-acetyl [Leu28,Leu31]neuropeptide Y-(24-36), with functional specificity for the presynaptic (Y2) receptor.
- Molecular cloning of an apolipoprotein B messenger RNA editing protein.
- A model of gastric emptying using paracetamol absorption in intensive care patients
- Zebrafish Genes for Neuropeptide Y and Peptide YY Reveal Origin by Chromosome Duplication from an Ancestral Gene Linked to the Homeobox Cluster
- c-Fos and related immediate early gene products as markers of activity in neuroendocrine systems.
- Subtypes Y1 and Y2 of the neuropeptide Y receptor are respectively expressed in pro-opiomelanocortin- and neuropeptide-Y-containing neurons of the rat hypothalamic arcuate nucleus.
- Influence of meal composition on postprandial peripheral plasma concentrations of vasoactive peptides in man.
Cited by
- Neuropeptides in Eating Disorders
- Atypical Antipsychotic-Induced Weight Gain
- Las hormonas gastrointestinales en el control de la ingesta
- Insulin-like growth factor I increases rat peptide YY promoter activity through Sp1 binding sites.
- Expression of hypothalamic neuropeptides after acute TCDD treatment and distribution of Ah receptor repressor.
- Emerging aspects of pharmacotherapy for obesity and metabolic syndrome.
- Reversible PEGylation of peptide YY3‐36 prolongs its inhibition of food intake in mice
- Evidence of an association between the Arg72 allele of the peptide YY and increased risk of type 2 diabetes.
- Mechanisms of Neuropeptide Y, Peptide YY, and Pancreatic Polypeptide Inhibition of Identified Green Fluorescent Protein-Expressing GABA Neurons in the Hypothalamic Neuroendocrine Arcuate Nucleus
- Common neuropeptide Y2 receptor gene variant is protective against obesity among Swedish men
- Gut Peptide Signaling in the Controls of Food Intake
- Incomplete restoration of the secretion of ghrelin and PYY compared to insulin after food ingestion following weight gain in anorexia nervosa.
- Hypothalamic regulation of food intake and clinical therapeutic applications.
- Ghrelin and peptide YY in postpartum lactating and nonlactating women.
- Impaired postprandial releases/syntheses of ghrelin and PYY3‐36 and blunted responses to exogenous ghrelin and PYY3‐36 in a rodent model of diet‐induced obesity
- The central insulin system and energy balance.
- Vitamin D receptor activation induces peptide YY transcription in pancreatic islets.
- The role of peptide YY in gastrointestinal diseases and disorders
- Enhanced transcription of pancreatic peptide YY by 1α-hydroxyvitamin D3 administration in streptozotocin-induced diabetic mice.
- Challenges and Opportunities in Management of Obesity
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