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Pancreatic polypeptide cells are most active and secrete more pancreatic polypeptide after a meal with high protein, fasting, physical activity, and acute hypoglycemia. These same cells are inhibited by somatostatin, an inhibitory gastrointestinal hormone, and the presence of glucose. [7] Pancreatic Polypeptide From a Mouse Cell
Pancreatic polypeptide regulates pancreatic secretion activities by both endocrine and exocrine tissues. It also affects hepatic glycogen levels and gastrointestinal secretions. Its secretion in humans is increased after a protein meal, fasting , exercise, and acute hypoglycaemia , and is decreased by somatostatin and intravenous glucose .
Pancreatic polypeptide: Pancreas: Inhibits pancreatic and biliary secretion Peptide YY: Colon: Inhibits food intake Somatostatin: Stomach, pancreas: Inhibits secretion and action of many hormones Substance P: Enteric nerves: Unclear Trefoil peptides: Stomach, intestine: Mucosal protection and repair
release breast milk Stimulates contraction of cervix and vagina. Involved in orgasm, trust between people, [2] and circadian homeostasis (body temperature, activity level, wakefulness). [3] 50 Pancreatic polypeptide: Peptide: Pancreas: PP cells: pancreatic polypeptide receptor 1: Self-regulation of pancreatic secretions (endocrine and exocrine).
The endocrine cells constitute the beta cells which make insulin, alpha cells which secrete glucagon, delta cells which secrete somatostatin and the PP-cells which secrete pancreatic polypeptide. [3] Pancreatic progenitor cells have been shown to arise from cells originating from the developing foregut during mammalian development.
Somatostatin is secreted by delta cells at several locations in the digestive system, namely the pyloric antrum, the duodenum and the pancreatic islets. [14]Somatostatin released in the pyloric antrum travels via the portal venous system to the heart, then enters the systemic circulation to reach the locations where it will exert its inhibitory effects.
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Enteroendocrine cells are specialized cells of the gastrointestinal tract and pancreas with endocrine function. They produce gastrointestinal hormones or peptides in response to various stimuli and release them into the bloodstream for systemic effect, diffuse them as local messengers, or transmit them to the enteric nervous system to activate nervous responses.