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PMID: 14081661 Published · ppublish English Journal Article

THE SITE OF THE 5-HYDROXYTRYPTAMINE RECEPTOR ON THE INTRAMURAL NERVOUS PLEXUS OF THE GUINEA-PIG ISOLATED ILEUM.

British journal of pharmacology and chemotherapy ·Vol. 21 ·1963-10-00 ·Pages 306-22

BROWNLEE G, JOHNSON ES

Abstract

Dose/response measurements were made on the guinea-pig isolated ileum with six agonists, acetylcholine, 5-hydroxytryptamine, nicotine, dimethylphenylpiperazinium, choline phenyl ether and histamine. The dose effects were repeated in the presence of each of twelve antagonists and one anticholinesterase. Acetylcholine and histamine were chosen because of their direct mode of action on smooth muscle, nicotine, dimethylphenylpiperazinium and choline phenyl ether were used as examples of drugs that act at the ganglionic acetylcholine receptor. 5-Hydroxytryptamine was the drug investigated. Hyoscine blocked the contractions caused by acetylcholine, 5-hydroxytryptamine and the ganglion-stimulants but left the responses to histamine unchanged. The anticholinesterase N,N'-diisopropylphosphorodiamidic fluoride (mipafox) potentiated all the agonists except histamine. The strength of potentiation decreased in the order 5-hydroxytryptamine, nicotine, dimethylphenylpiperazinium and choline phenyl ether, and acetylcholine. The local anaesthetic procaine inhibited to the same extent contractions elicited by 5-hydroxytryptamine, nicotine, dimethylphenylpiperazinium and choline phenyl ether. These results showed that 5-hydroxytryptamine, like nicotine, choline phenyl ether and dimethylphenylpiperazinium, mediated its response through the nervous plexus. Of those tested 5-hydroxytryptamine was the only specific antagonist to 5-hydroxytryptamine; lysergic acid derivatives produced spasm and prolonged changes in tone; phenoxybenzamine caused non-specific block. The diverse modes of action of a number of ganglion-blocking agents were selectively used. Thus hexamethonium, pentolinium, and nicotine in its competitive phase, blocked contractions due to nicotine, dimethylphenylpiperazinium and choline phenyl ether and left those due to 5-hydroxytryptamine, acetylcholine and histamine unchanged. The depolarizing ganglion-blocking agents, dimethylphenylpiperazinium and nicotine, inhibited the responses to all the indirectly acting drugs. Furthermore, mecamylamine, a drug with a less well-defined mode of action, partially inhibited contractions due to 5-hydroxytryptamine in a concentration that blocked those due to nicotine, dimethylphenylpiperazinium and choline phenyl ether. Pempidine, known to act like mecamylamine, did not antagonize 5-hydroxytryptamine. It is concluded that 5-hydroxytryptamine activates specific receptors sited at the intramural parasympathetic ganglion cells.

Keywords
ACETYLCHOLINE CHOLINE EXPERIMENTAL LAB STUDY GANGLIA AUTONOMIC GANGLIONIC BLOCKADERS GUINEA PIGS HEXAMETHONIUM COMPOUNDS HISTAMINE ILEUM LYSERGIC ACID DIETHYLAMIDE MECAMYLAMINE NICOTINE PEMPIDINE PENTOLINIUM TARTRATE PHARMACOLOGY PHENOXYBENZAMINE PHOSPHORUS POISONS ORGANIC PROCAINE SCOPOLAMINE SEROTONIN
MeSH Terms
Acetylcholine Animals Autonomic Nervous System Choline Ganglia Ganglia, Autonomic Ganglionic Blockers Guinea Pigs Hexamethonium Compounds Histamine Ileum Isoflurophate Lysergic Acid Diethylamide Mecamylamine Muscle, Smooth Nicotine Organophosphate Poisoning Pempidine Pentolinium Tartrate Pharmacology Phenoxybenzamine Phosphorus Poisons Procaine Receptors, Serotonin Research Scopolamine Serotonin
Chemicals
Ganglionic Blockers Hexamethonium Compounds Poisons Receptors, Serotonin Phenoxybenzamine Isoflurophate mipafox Phosphorus Serotonin Procaine Mecamylamine Nicotine Histamine Lysergic Acid Diethylamide Pentolinium Tartrate Scopolamine Pempidine Choline Acetylcholine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
BROWNLEE G
JOHNSON E S
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22 references, click to expand
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Article Info
Journal
British journal of pharmacology and chemotherapy
Abbr.
Br J Pharmacol Chemother
ISSN
0366-0826
Published
1963-10-00
Pages
306-22
Language
English
Region
England
NLM ID
0154627
PMCID
PMC1703842
Subset
OM
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