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  2. Pancreatic polypeptide cells - Wikipedia

    en.wikipedia.org/wiki/Pancreatic_polypeptide_cells

    This is noted in human PP cells, but different animals have been shown to have different sized granules compared to humans, like rodents. In cats and dogs, PP cells have large granules. [6] In rats, PP cells have few granules, similar to humans. In dogs, some PP cells are located in the walls of the antrum of the stomach. [3] Pancreatic Islets

  3. Pancreatic polypeptide - Wikipedia

    en.wikipedia.org/wiki/Pancreatic_polypeptide

    Immunohistochemistry for pancreatic polypeptide in a mouse pancreas, 200×. Pancreatic polypeptide (PP) is a polypeptide secreted by PP cells in the endocrine pancreas.It is a hormone and it regulates pancreatic secretion activities, and also impacts liver glycogen storage and gastrointestinal secretion.

  4. Pancreatic progenitor cell - Wikipedia

    en.wikipedia.org/wiki/Pancreatic_Progenitor_Cell

    They give rise to both the endocrine and exocrine cells. Exocrine cells constitute the acinar cells and the ductal cells. 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]

  5. Diabetes in dogs - Wikipedia

    en.wikipedia.org/wiki/Diabetes_in_dogs

    Illustration of a dog's pancreas. Cell-islet in the illustration refers to a pancreatic cell in the Islets of Langerhans, which contain insulin-producing beta cells and other endocrine related cells. Permanent damage to these beta cells results in Type 1, or insulin-dependent diabetes, for which exogenous insulin replacement therapy is the only ...

  6. Beta cell - Wikipedia

    en.wikipedia.org/wiki/Beta_cell

    [28] [29] In an effort to secrete enough insulin to overcome the increasing insulin resistance, the beta cells increase their function, size and number. [4] Increased insulin secretion leads to hyperinsulinemia, but blood glucose levels remain within their normal range due to the decreased efficacy of insulin signaling. [ 4 ]

  7. Mechanism of action of aspirin - Wikipedia

    en.wikipedia.org/wiki/Mechanism_of_action_of_aspirin

    Aspirin acts as an acetylating agent where an acetyl group is covalently attached to a serine residue in the active site of the COX enzyme. [1] This makes aspirin different from other NSAIDs (such as diclofenac and ibuprofen), which are reversible inhibitors; aspirin creates an allosteric change in the structure of the COX enzyme. [2]