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5-ht3a receptor
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The most well studied use of the 5-HT3 receptor is in combating IBS. The 5-HT3 receptor is found in high concentration on the mucosal membrane of the stomach. When this receptor is over activated, it can cause pain in the colon as well as an increased rate in waste production. When an antagonist of the receptor was administered to patients with IBS, their symptoms were alleviated<ref name="thompson">. This demonstrates the wide variety of possible medical treatments that include the utilization of 5-HT3 receptors and how much more there still is to be discovered. | The most well studied use of the 5-HT3 receptor is in combating IBS. The 5-HT3 receptor is found in high concentration on the mucosal membrane of the stomach. When this receptor is over activated, it can cause pain in the colon as well as an increased rate in waste production. When an antagonist of the receptor was administered to patients with IBS, their symptoms were alleviated<ref name="thompson">. This demonstrates the wide variety of possible medical treatments that include the utilization of 5-HT3 receptors and how much more there still is to be discovered. | ||
| - | + | </StructureSection> | |
==3D structures of 5-hydroxytryptamine receptor== | ==3D structures of 5-hydroxytryptamine receptor== | ||
See [[5-hydroxytryptamine receptor]] | See [[5-hydroxytryptamine receptor]] | ||
| - | </StructureSection> | ||
== References == | == References == | ||
{{reflist}} | {{reflist}} | ||
Current revision
5-HT3a Receptor
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3D structures of 5-hydroxytryptamine receptor
See 5-hydroxytryptamine receptor
References
- ↑ 1.0 1.1 1.2 Barnes, N., Hales, T., Lummis, S., & Peters, J. (2009). The 5-HT3 receptor – the relationship between structure and function. Neuropharmacology, 273-284
- ↑ Perumal, R., & Mahesh, R. (2006). Synthesis and biological evaluation of a novel structural type of serotonin 5-HT3 receptor antagonists. Bioorganic & Medicinal Chemistry Letters, 2769-2772.
- ↑ 3.0 3.1 Hassaine, G., Deluz, C., Grasso, L., Wyss, R., Tol, M., Hovius, R., . . . Nury, H. (2014). X-ray structure of the mouse serotonin 5-HT3 receptor. Nature, 276-281.
- ↑ 4.0 4.1 Gupta, D., Thangaraj, D., & Radhakrishnan, M. (2016). A novel 5HT3 antagonist 4i (N-(3-chloro-2-methylphenyl)quinoxalin-2-carboxamide) prevents diabetes-induced depressive phenotypes in mice: Modulation of serotonergic system. Behavioural Brain Research, 297, 41-50. doi:10.1016/j.bbr.2015.10.007
- ↑ Serotonin - Receptors and effects. (n.d.). Retrieved November 14, 2015, from http://www.pharmacorama.com/en/Sections/Serotonin_2_2.php
- ↑ Galligan, J. J. (2002). Ligand-gated ion channels in the enteric nervous system. Neurogastroenterology & Motility, 14(6), 611-623. doi: 10.1046/j.1365-2982.2002.00363.x
- ↑ 7.0 7.1 7.2 7.3 7.4 7.5 7.6 Thompson, A. J., & Lummis, S. C. R. (2006). 5-HT3 receptors. Current Pharmaceutical Design, 12(28), 3615–3630.
- ↑ 8.0 8.1 Morrison, T. R., Ricci, L. A., & Melloni, R. H., Jr. (2015). Aggression and anxiety in adolescent AAS-treated hamsters: A role for 5HT3 receptors. Pharmacology Biochemistry and Behavior, 134, 85-91. doi:10.1016/j.pbb.2015.05.001
- ↑ Hannon, J., & Hoyer, D. (2008). Research report: molecular biology of 5-HT receptors. Behavioural Brain Research, 195(Serotonin and cognition: mechanisms and applications), 198-213. doi:10.1016/j.bbr.2008.03.020
