Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:P46098 (5-HT3 receptor)
2,290 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Exposure of sensitised intestine to specific allergen is known to produce appreciable reduction in water and electrolyte absorption. The mediators participating in this process have not been fully characterised. The effects of the 5-hydroxytryptamine2 (5-HT2) and 5-HT3 receptor antagonists, ketanserin and granisetron, respectively, on water movement during intestinal anaphylaxis were studied. Hooded Lister rats (120-150 g) were sensitised to ovalbumen and 14 days later, intestinal water and electrolyte movement was assessed at 10 minute intervals by in situ jejunal perfusion with a plasma electrolyte solution (PES) or PES containing 20 mg/l ovalbumen. Within 20 minutes of exposure to PES+ovalbumen, net water secretion that could be completely prevented by the mast cell stabilising agent doxantrazole occurred compared with absorption with PES alone (median -20 microliters/min/g (interquartile range -43 to -5), n = 11), v (107 (86 to 113), n = 10; p < 0.01). Pre-treatment with subcutaneous ketanserin 200 micrograms/kg (n = 7) or granisetron 300 micrograms/kg (n = 8) partially inhibited the secretory response to PES+ovalbumen (18 (11 to 48) and 13 (6 to 32) respectively; both p < 0.01 compared with PES+ovalbumen control). After 40 minutes perfusion with PES+ovalbumen, the changes in water movement were less pronounced 24 (-3 to 43) and neither ketanserin or granisetron had any effect (ketanserin: 48 (28 to 87), granisetron: 41 (32 to 83); NS). In all experiments, sodium and chloride movement paralleled that of water. Thus, the profound water secretion that occurs in the early stages of intestinal anaphylaxis is partly 5-HT dependent because it can be reversed by 5-HT2 and 5-HT3 receptor antagonists. Other mediators must also be involved, especially in the late phase of anaphylaxis.
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PMID:Role of 5-hydroxytryptamine in intestinal water and electrolyte movement during gut anaphylaxis. 773 63

Altered intestinal motility and diarrhea are features of food protein-induced intestinal anaphylaxis in the conscious rat. These experiments were performed to determine the mediator(s) responsible for jejunal circular smooth muscle contraction during this response. Hooded-Lister rats were sensitized by intraperitoneal injection of 10-micrograms egg albumin, and controls were sham-sensitized with saline. Fourteen days later the contractility of the circular muscle in jejunal segments (mucosa intact) was examined in standard tissue baths in response to antigen (Ag) or other agents. While control and sensitized tissues contracted in similar fashion in response to stretch, bethanechol, histamine, or 5-hydroxytryptamine (5HT), Ag contracted only the segments of sensitized animals. The contractile response was: (1) specific to the sensitizing Ag, as bovine serum albumin did not induce contraction and (2) could be passively transferred with serum containing specific immunoglobulin E antibody (IgE-Ab). Concanavalin A, which degranulates both mucosal and connective tissue-type mast cells, and compound 48/80, which degranulates only connective tissue-type mast cells produced contractile responses. Ag-induced contraction was significantly inhibited by the mucosal and connective tissue-type mast cell stabilizer doxantrazole, but not the connective tissue mast cell stabilizer disodium cromoglycate. Diphenhydramine and cimetidine together significantly inhibited histamine-induced contraction, but failed to effect the Ag-induced contraction in sensitized tissues. While the contractile response to 5HT was reduced in the presence of methysergide (5HT1-receptor antagonist), cinanserin (5HT2-receptor antagonist), and ICS 205-930 (5HT3-receptor antagonist), only cinanserin significantly inhibited the contractile response to Ag. Indomethacin significantly inhibited Ag-induced contraction. Ag-induced contraction was resistant to atropine and tetrodotoxin.(ABSTRACT TRUNCATED AT 250 WORDS)
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PMID:Mediation of anaphylaxis-induced jejunal circular smooth muscle contraction in rats. 844 68