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Serotonin Associated Mechanisms in Sudden Unexpected Death in Epilepsy: A Review. [PDF]
Li B +6 more
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Gut microbiota metabolites in inflammatory bowel disease: advances in mechanistic insights. [PDF]
Liang Y, Zhou Y, Luo P, Lin J.
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The neuro-skeletal crosstalk: Mechanisms, clinical implications, and smart material interventions. [PDF]
Liu W +19 more
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Spexin disrupts migrating myoelectric complex in the rat small intestine: The role of galanin-2 and muscarinic receptors. [PDF]
Saltık ÖD +3 more
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Understanding insulin-like peptide 5 (INSL5) and relaxin family peptide receptor 4 (RXFP4): structure, signalling, and function. [PDF]
Wu H +9 more
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Molecular biology of 5-HT receptors
Behavioural Brain Research, 2008Serotonin (5-hydroxytryptamine; 5-HT) is a monoamine neurotransmitter whose effects are mediated by at least 13 distinct G protein-coupled receptors (GPCRs) of the type A family which includes the monoamine receptors and a combination of ligand-gated ion channels (5-HT3) of the Cys loop family which constitutes heteropentamers.
Jason, Hannon, Daniel, Hoyer
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Quinpirole — A 5-HT receptor antagonist?
Neuroscience Letters, 1991The rate of brain monoamine synthesis was estimated in the rat by measuring the accumulation of dihydroxyphenylalanine (DOPA) and 5-hydroxytryptophan (5-HTP) following inhibition of cerebral aromatic amino acid decarboxylase by NSD-1015 (475 mumol/kg, i.p., 30 min before decapitation).
S, Ahlenius +2 more
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Molecular biology of 5-HT receptors
Neuropharmacology, 1994The receptors through which serotonin (5-hydroxytryptamine, 5-HT) produces its effects have been the subject of intense investigation, initially using both in vivo and in vitro pharmacological methods, and later radioligand binding. These approaches allowed a preliminary classification of 5-HT receptors, but the identification on subtypes was limited ...
F G, Boess, I L, Martin
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Neuronal 5-HT receptors in the periphery
Neuropharmacology, 19845-Hydroxytryptamine (5-HT) induces responses in neurones from all branches of the mammalian peripheral nervous system. Responses may be excitatory or inhibitory and are mediated through at least four distinct receptor sites. One receptor mediates excitation in motoneurones and preganglionic sympathetic neurones and can be designated a D (or possibly 5 ...
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