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PMID: 8564199 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Quinidine blockade of the carbachol-activated nonselective cationic current in guinea-pig gastric myocytes.

British journal of pharmacology ·Vol. 115 ·No. 8 ·1995-08-00 ·Pages 1407-14

Kim SJ, Ahn SC, So I, Kim KW

Abstract

1. In guinea-pig gastric myocytes isolated from the antral circular layer, stimulation of muscarinic receptors by carbachol (CCh) induces a cationic current (ICCh) which is known as the main mechanism of depolarization induced by muscarinic stimulation. 2. We tested the effects of a number of ion channel blockers on ICCh and focused upon quinidine which was a highly potent blocker. Externally applied quinidine suppressed ICCh (IC50 = 0.25 microM) in a reversible and voltage-dependent manner. Applied internally, quinidine was about 100 times less potent than when applied externally. Persistent activation of G-protein by GTP gamma S also induced a cationic current similar to ICCh and this current was also blocked by quinidine. 4-Aminopyridine and tetraethylammonium also suppressed ICCh in a dose-dependent manner (IC50 = 3.3 mM and 4.1 mM, respectively). 3. Pretreatment with quinidine (2 microM) selectively blocked the acetylcholine (ACh)-induced depolarization which was recorded in the multicellular tissues by a conventional intracellular microelectrode technique. 4. Voltage-dependent K-currents were also suppressed by quinidine but in a higher concentration range (IC50 = 3 microM). Quinidine, 10 microM, decreased the amplitude of the voltage-dependent Ca current to only a small extent (15% decrease at 0 mV). Quinidine, 2 microM, also suppressed only a minute proportion of the Ca-activated K current (11.1% decrease at 45 mV). 5. From these experiments, it is concluded that some organic agents known as K channel blockers are able to block the CCh-activated cation channel in a non-specific manner and among them, quinidine can be used as an effective blocker for ICCh in guinea-pig gastric myocytes.

MeSH Terms
4-Aminopyridine/pharmacology Acetylcholine/pharmacology Animals Anti-Arrhythmia Agents/pharmacology Calcium Channels/drug effects,metabolism Carbachol/antagonists & inhibitors Cations/metabolism Dose-Response Relationship, Drug Electrophysiology Female GTP-Binding Proteins/metabolism Guanosine 5'-O-(3-Thiotriphosphate)/pharmacology Guinea Pigs Ion Transport/drug effects Male Microelectrodes Muscle, Smooth/cytology,drug effects Potassium Channels/drug effects,metabolism Quinidine/pharmacology Receptors, Muscarinic/drug effects Stomach/cytology,drug effects Tetraethylammonium Tetraethylammonium Compounds/pharmacology
Chemicals
Anti-Arrhythmia Agents Calcium Channels Cations Potassium Channels Receptors, Muscarinic Tetraethylammonium Compounds Guanosine 5'-O-(3-Thiotriphosphate) Tetraethylammonium Carbachol 4-Aminopyridine GTP-Binding Proteins Quinidine Acetylcholine
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Kim S J
Department of Physiology & Biophysics, Seoul National University College of Medicine, Korea.
Ahn S C
So I
Kim K W
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Article Info
Journal
British journal of pharmacology
Abbr.
Br J Pharmacol
ISSN
0007-1188
Published
1995-08-00
Pages
1407-14
Language
English
Region
England
NLM ID
7502536
PMCID
PMC1908882
Subset
IM
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