Bretylium or 6‐OHDA‐resistant, action potential‐evoked Ca2+ transients in varicosities of the mouse vas deferens

Action potential‐evoked calcium transients in varicosities in mouse vas deferens were monitored using laser scanning confocal microscopy. Their significance was examined by comparison with excitatory junction potentials (EJPs) and neurogenic contractions, both indirect measurements of transmitter re...

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Published in:British journal of pharmacology Vol. 135; no. 8; pp. 1845 - 1850
Main Authors: Jackson, V Margaret, Cunnane, Tom C
Format: Journal Article
Language:English
Published: Oxford, UK Blackwell Publishing Ltd 01-04-2002
Nature Publishing
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Abstract Action potential‐evoked calcium transients in varicosities in mouse vas deferens were monitored using laser scanning confocal microscopy. Their significance was examined by comparison with excitatory junction potentials (EJPs) and neurogenic contractions, both indirect measurements of transmitter release. Bretylium abolished EJPs, as well as the ATP and NA‐mediated phases of contraction. However, bretylium revealed a prominent late component of contraction that was atropine‐sensitive. Bretylium abolished calcium transients in 21%, enhanced in 16% and had no effect in 63% of varicosities examined. Pre‐treatment with 6‐OHDA reduced NA levels to below detectable levels but many strings of varicosities still responded to nerve impulses with ‘normal’ calcium transients. Varicosities in which calcium transients were abolished by these agents were sympathetic. The identity of those varicosities in which calcium transients were resistant to bretylium (sympathetic but no uptake‐1 sites, parasympathetic, sensory) remains to be established. British Journal of Pharmacology (2002) 135, 1845–1850; doi:10.1038/sj.bjp.0704677
AbstractList Action potential‐evoked calcium transients in varicosities in mouse vas deferens were monitored using laser scanning confocal microscopy. Their significance was examined by comparison with excitatory junction potentials (EJPs) and neurogenic contractions, both indirect measurements of transmitter release. Bretylium abolished EJPs, as well as the ATP and NA‐mediated phases of contraction. However, bretylium revealed a prominent late component of contraction that was atropine‐sensitive. Bretylium abolished calcium transients in 21%, enhanced in 16% and had no effect in 63% of varicosities examined. Pre‐treatment with 6‐OHDA reduced NA levels to below detectable levels but many strings of varicosities still responded to nerve impulses with ‘normal’ calcium transients. Varicosities in which calcium transients were abolished by these agents were sympathetic. The identity of those varicosities in which calcium transients were resistant to bretylium (sympathetic but no uptake‐1 sites, parasympathetic, sensory) remains to be established. British Journal of Pharmacology (2002) 135, 1845–1850; doi:10.1038/sj.bjp.0704677
Action potential-evoked calcium transients in varicosities in mouse vas deferens were monitored using laser scanning confocal microscopy. Their significance was examined by comparison with excitatory junction potentials (EJPs) and neurogenic contractions, both indirect measurements of transmitter release. Bretylium abolished EJPs, as well as the ATP and NA-mediated phases of contraction. However, bretylium revealed a prominent late component of contraction that was atropine-sensitive. Bretylium abolished calcium transients in 21%, enhanced in 16% and had no effect in 63% of varicosities examined. Pre-treatment with 6-OHDA reduced NA levels to below detectable levels but many strings of varicosities still responded to nerve impulses with 'normal' calcium transients. Varicosities in which calcium transients were abolished by these agents were sympathetic. The identity of those varicosities in which calcium transients were resistant to bretylium (sympathetic but no uptake-1 sites, parasympathetic, sensory) remains to be established.
Author Cunnane, Tom C
Jackson, V Margaret
AuthorAffiliation 1 1 University Department of Pharmacology, Mansfield Road, Oxford, OX1 3QT
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  surname: Jackson
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Issue 8
Keywords Calcium
Rodentia
Electrophysiology
Action potential
Ionic current
Antiarrhythmic agent
Catecholamine
Sympathetic nervous system
In vitro
Vas deferens
Quaternary ammonium compound
Electrodiagnosis
Vertebrata
Mammalia
Mouse
Autonomic nervous system
Bretylium tosilate
Animal
Neurotransmitter
Norepinephrine
Excitatory postsynaptic potential
ATP
Urogenital system
Parasympathetic nervous system
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Snippet Action potential‐evoked calcium transients in varicosities in mouse vas deferens were monitored using laser scanning confocal microscopy. Their significance...
Action potential-evoked calcium transients in varicosities in mouse vas deferens were monitored using laser scanning confocal microscopy. Their significance...
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StartPage 1845
SubjectTerms 6‐OHDA
Action Potentials - drug effects
Action Potentials - physiology
Adrenergic Agents - pharmacology
Adrenergic Fibers - drug effects
Adrenergic Fibers - physiology
Animals
Anti-Arrhythmia Agents - pharmacology
Biological and medical sciences
bretylium
Bretylium Compounds - pharmacology
Calcium - physiology
calcium imaging
Drug Resistance - physiology
Fundamental and applied biological sciences. Psychology
Male
Mice
Mice, Inbred BALB C
mouse vas deferens
Oxidopamine - pharmacology
parasympathetic
Peripheral nervous system. Autonomic nervous system. Neuromuscular transmission. Ganglionic transmission. Electric organ
sensory
Special Report
Sympathetic
uptake‐1
Vas Deferens - drug effects
Vas Deferens - innervation
Vas Deferens - physiology
Vertebrates: nervous system and sense organs
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Title Bretylium or 6‐OHDA‐resistant, action potential‐evoked Ca2+ transients in varicosities of the mouse vas deferens
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