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Gastrin is a linear peptide hormone produced by G cells of the duodenum and in the pyloric antrum of the stomach.It is secreted into the bloodstream. The encoded polypeptide is preprogastrin, which is cleaved by enzymes in posttranslational modification to produce progastrin (an intermediate, inactive precursor) and then gastrin in various forms, primarily the following three:
A G cell or gastrin cell is a type of cell in the stomach and duodenum that secretes gastrin. It works in conjunction with gastric chief cells and parietal cells. G cells are found deep within the pyloric glands of the stomach antrum, and occasionally in the pancreas [1] and duodenum. The vagus nerve innervates the G cells.
Hormone or peptide Major tissue locations in the gut Principal known actions Bombesin: Throughout the gut and pancreas: Stimulates release of cholecystokinin (CCK) and gastrin Calcitonin gene-related peptide: Enteric nerves: Unclear Chromogranin A: Neuroendocrine cells: Secretory protein Enkephalins: Stomach, duodenum: Opiate-like actions ...
Enterochromaffin-like cells are enteroendocrine and neuroendocrine cells also known for their similarity to chromaffin cells secreting histamine, which stimulates G cells to secrete gastrin. Other hormones produced include cholecystokinin, somatostatin, vasoactive intestinal peptide, substance P, alpha and gamma-endorphin. [10] [24]
ECL cells; parietal cells None Increases acid secretion, increases mucus growth Stimulates gastric contraction None Peptides and amino acids in lumen; gastrin releasing peptide and ACh in nervous reflexes Cholecystokinin (CCK) Endocrine I cells of the small intestine; neurons of the brain and gut Gallbladder, pancreas, gastric smooth muscle None
Progastrin is an 80-amino acid intracellular protein and the precursor of gastrin, a gastrointestinal hormone produced by G cells in the gastric antrum. [1] The main function of gastrin is to regulate acid secretion. [2]
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It also causes increased motility in the stomach. Gastrin is released by G cells in the stomach in response to distension of the antrum and digestive products (especially large quantities of incompletely digested proteins). It is inhibited by a pH normally less than 4(high acid), as well as the hormone somatostatin. Cholecystokinin