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Visit our cookie policy to learn more. By continuing to use our services or closing this banner, you consent to our use of cookies. How it Works. Get paper from. PRL-releasing peptide interacts with leptin to reduce food intake and body weight Endocrinology Feb 1, Get PDF. Structure of Ventromedial Hypothalamic Nucleus.

Leptin Measurement. Weighing Patient.

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MRNA Expression. Paper Details. References currently unavailable We're still populating references for this paper, please check back later. Endogenous prolactin-releasing peptide regulates food intake in rodents The Journal of Clinical Investigation December 1, Yuki Takayanagi Tatsushi Onaka.

Physiological roles of prolactin-releasing peptide Regulatory Peptides March 15, Binggui Sun Kinji Inoue. GLP-1 neurons form a local synaptic circuit within the rodent nucleus of the solitary tract The Journal of Comparative Neurology July 19, J Patrick Card Linda Rinaman. Feeding response to a potent prolactin-releasing peptide agonist in lean and obese Zucker rats Brain Research July 30, Tatsushi Onaka Gareth Leng. Biological properties of prolactin-releasing peptide analogs with a modified aromatic ring of a C-terminal phenylalanine amide Peptides September 1, The thermogenic effect of leptin is dependent on a distinct population of prolactin-releasing peptide neurons in the dorsomedial hypothalamus Cell Metabolism October 7, Prolactin-releasing peptide affects gastric motor function in rat by modulating synaptic transmission in the dorsal vagal complex The Journal of Physiology December 15, Gintautas Grabauskas Hylan C Moises.

Annu Rev Physiol. Bowels control brain: gut hormones and obesity. Nat Rev Endocrinol. Holst JJ. Incretin hormones and the satiation signal. Int J Obes Glucagon-like peptide-1, but not glucose-dependent insulinotropic peptide, inhibits glucagon secretion via somatostatin receptor subtype 2 in the perfused rat pancreas. Springer-Verlag; An analysis of cosecretion and coexpression of gut hormones from male rat proximal and distal small intestine. Antibody validation.

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Burry RW. Specificity controls for immunocytochemical methods. J Histochem Cytochem. An overview of western blotting for determining antibody specificities for immunohistochemistry. In: Kalyuzhny AE, editor. Signal transduction immunohistochemistry. New York: Humana Press; A genecentric human protein atlas for expression profiles based on antibodies. Mol Cell Proteomics. Ha M, Kim VN. Regulation of microRNA biogenesis. Nat Rev Mol Cell Biol.

The Comparative Physiology of Regulatory Peptides - eBook -

Day D, Tuite M. Post-transcriptional gene regulatory mechanisms in eukaryotes: an overview. J Endocrinol. King AJF. The use of animal models in diabetes research. Br J Pharmacol. Cross-species comparison of genes related to nutrient sensing mechanisms expressed along the intestine. PLoS One. A novel immune-based approach for measurement of the anorectic gut hormone oxyntomodulin: changes after gastric bypass surgery.

Specificity and sensitivity of commercially available assays for glucagon and oxyntomodulin measurement in humans. Eur J Endocrinol.

Specificity and sensitivity of commercially available assays for glucagon-like peptide-1 GLP-1 : implications for GLP-1 measurements in clinical studies. Diab Obes Metab.

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Measurement of the incretin hormones: glucagon-like peptide-1 and glucose-dependent insulinotropic peptide. J Diab Complicat. Tissue and plasma concentrations of amidated and glycine-extended glucagon-like peptide I in humans. Glucose stimulates neurotensin secretion from the rat small intestine by mechanisms involving SGLT1 and GLUT2 leading to cell depolarization and calcium influx. Am J physiol Endocrinol Metab. GLP-1 amidation efficiency along the length of the intestine in mice, rats and pigs and in GLP-1 secreting cell lines. Stability of glucagon-like peptide-1 and glucagon in human plasma.

Endocr Connect. Dipeptidyl peptidase IV inhibition enhances the intestinotrophic effect of glucagon-like peptide-2 in rats and mice. Glucagon-like peptide-1 cells in the gastrointestinal tract and pancreas of rat, pig and man. EurJ Clin Invest. Distribution and postprandial release of porcine peptide YY. Differences in hormone localisation patterns of K and L type enteroendocrine cells in the mouse and pig small intestine and colon. Cell Tissue Res. The distribution of polypeptide YY-like immunoreactivity in rat tissues.

Identification and distribution of immunoreactive peptide YY in the human, canine, and murine gastrointestinal tracts: species-related antibody recognition differences. Regul Pept. Human distribution and release of a putative new gut hormone, peptide YY.

The physiology of glucagon-like peptide 1.

Early stages of phylogenesis of peptide regulation

Physiol Rev. Glucagon-like peptides GLP-1 and GLP-2, predicted products of the glucagon gene, are secreted separately from pig small intestine but not pancreas. Distribution and properties of glucagon immunoreactivity in the digestive tract of various mammals: an immunohistochemical and immunochemical study. Differential expression of the neurotensin gene in the developing rat and human gastrointestinal tract. Distribution of the gut hormones in the primate intestinal tract.

Overlap of endocrine hormone expression in the mouse intestine revealed by transcriptional profiling and flow cytometry.

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  8. Coexistence of peptide YY and glicentin immunoreactivity in endocrine cells of the gut. Glucagon-like peptide-1 as a treatment for chemotherapy-induced mucositis. Regulation of intestinal proglucagon-derived peptide secretion by glucose-dependent insulinotropic peptide in a novel enteroendocrine loop.

    Hansen L, Holst JJ. The effects of duodenal peptides on glucagon-like peptide-1 secretion from the ileum: a duodeno—ileal loop? Preserved incretin activity of glucagon-like peptide 1 [ amide] but not of synthetic human gastric inhibitory polypeptide in patients with type-2 diabetes mellitus. J Clin Investig.

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    Wood S. Distribution of gut peptides and their actions. In: Bennett A, Velo G, editors. Mechanisms of gastrointestinal motility and secretion.

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    US: Springer; Download references. All authors have provided final approval of the version to be published. JJH is responsible for the integrity of the work as a whole.