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Once it is produced, pancreatic polypeptide is shown to be a 36 amino acid long peptide that can be sent out to different areas within the pancreas or organism. [6] Pancreatic polypeptide cells are most active and secrete more pancreatic polypeptide after a meal with high protein, fasting, physical activity, and acute hypoglycemia.
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 .
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.
Ichor originates in Greek mythology, where it is the "ethereal fluid" that is the blood of the Greek gods, sometimes said to retain the qualities of the immortals' food and drink, ambrosia and nectar. [2]
Alpha cells are endocrine cells, meaning they secrete a hormone, in this case glucagon. Alpha cells store this glucagon in secretory vesicles that typically have an electron dense core and a grayish outer edge. [1] It is believed that alpha cells make up approximately 20% of endocrine cells within the pancreas. [1]
Sebaceous glands secrete the skin lubricant sebum. Sebum is secreted onto the hair shaft and it prevents the hair from splitting. It consists mostly of lipids. After the sebum spreads along and up the hair shaft, it is distributed over the skin surface where it lubricates and waterproofs the outer layer of the skin, the stratum corneum. [1] [2]
The alpha and beta cells are the endocrine cells in the pancreatic islets that release insulin and glucagon and smaller amounts of other hormones into the blood. Insulin and glucagon influence blood sugar levels. Glucagon is released when the blood glucose level is low and stimulates the liver to release glucose into the blood. Insulin ...
supports regulatory T cell production; stimulate dendritic cell maturation (antigen presenting cells of skin & mucosa) inhibit antibody B cell proliferation; ↑ inflammatory region blood flow (pyogenic & erythema) Inhibitory effects of dorsal root ganglion (speculated reduction in allodynia & hyperalgesia) ↓ gastric acid secretion; ↑ ...