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Satiety signalling: difference between revisions

Diff·revision 5 → 6·18:04, 14 Oct 2024

Difference between revision 5 and revision 6 of Satiety signalling. 3 lines changed; the page grew by 488 bytes.

Revision 5 — 16:34, 27 Sep 2024
RepackRadek (talk)
add the enteroendocrine cell type responsible for secretion
2,746 bytes +576
Revision 6 — 18:04, 14 Oct 2024
LabRangeLindy (talk)
correct the second-messenger pathway named in the lead
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17Intestinal hormones add nutrient specificity. Cholecystokinin is released from duodenal I cells in response to fat and protein and acts largely within a meal. GLP-1 and peptide YY are released from more distal [[Enteroendocrine L cell|L cells]] and act over a longer window. Amylin, co-secreted with insulin from the pancreas, acts at the area postrema.{{r|holst2007}}17Intestinal hormones add nutrient specificity. Cholecystokinin is released from duodenal I cells in response to fat and protein and acts largely within a meal. GLP-1 and peptide YY are released from more distal [[Enteroendocrine L cell|L cells]] and act over a longer window. Amylin, co-secreted with insulin from the pancreas, acts at the area postrema.{{r|holst2007}}
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+19Adiposity signals set the background against which meal-related signals are read. Leptin and insulin circulate in proportion to fat mass and modulate the sensitivity of the hypothalamic circuits to meal-related input rather than terminating meals themselves.{{r|schwartz2000}}
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19== References ==21== References ==
20{{reflist}}22{{reflist}}
21<ref name="woods2009">Woods SC. "The control of food intake: behavioral versus molecular perspectives." ''Cell Metabolism'' 9(6):489–498 (2009). DOI:10.1016/j.cmet.2009.04.007. PMID 19490904.</ref>23<ref name="woods2009">Woods SC. "The control of food intake: behavioral versus molecular perspectives." ''Cell Metabolism'' 9(6):489–498 (2009). DOI:10.1016/j.cmet.2009.04.007. PMID 19490904.</ref>
+24<ref name="schwartz2000">Schwartz MW, Woods SC, Porte D, Seeley RJ, Baskin DG. "Central nervous system control of food intake." ''Nature'' 404(6778):661–671 (2000). DOI:10.1038/35007534. PMID 10766253.</ref>
22<ref name="drucker2018">Drucker DJ. "Mechanisms of action and therapeutic application of glucagon-like peptide-1." ''Cell Metabolism'' 27(4):740–756 (2018). PMID 29617641.</ref>25<ref name="drucker2018">Drucker DJ. "Mechanisms of action and therapeutic application of glucagon-like peptide-1." ''Cell Metabolism'' 27(4):740–756 (2018). PMID 29617641.</ref>
23<ref name="holst2007">Holst JJ. "The physiology of glucagon-like peptide 1." ''Physiological Reviews'' 87(4):1409–1439 (2007). PMID 17928588.</ref>26<ref name="holst2007">Holst JJ. "The physiology of glucagon-like peptide 1." ''Physiological Reviews'' 87(4):1409–1439 (2007). PMID 17928588.</ref>