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PMID: 9869533 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Cytochalasin D as excitation-contraction uncoupler for optically mapping action potentials in wedges of ventricular myocardium.

Journal of cardiovascular electrophysiology ·Vol. 9 ·No. 12 ·1998-12-00 ·Pages 1336-47

Wu J, Biermann M, Rubart M, Zipes DP

Abstract

Cytochalasin D in tissue bath superfusate inhibits the contraction of isolated thin trabeculae from canine right ventricle without affecting the intracellular action potential recorded with glass microelectrode. The purpose of this study was to test whether cytochalasin D could also be used to immobilize perfused wedges of ventricular muscle without affecting the action potential duration or propagation, and also to determine the optimal concentration and time duration of drug in the perfusate. Using a membrane potential sensitive dye, di-4-ANEPPS, and a high-resolution photodiode optical mapping system at a rate of 1,000 frames/sec, we recorded action potentials on the transmural surface of arterially perfused wedges of muscle from the canine left ventricular free wall. We also recorded arterial pulse pressure as a surrogate for tissue contraction. Cytochalasin D at > or = 20 micromol/L in the perfusate for > or = 6 minutes reduced the arterial pulse pressure to approximately one tenth of its initial value and significantly reduced or eliminated motion artifacts in the action potentials. A sustained concentration of 10 micromol/L cytochalasin D in the perfusate prevented contraction from recurring after the tissue was immobilized with an initial concentration of 25 micromol/L. Cytochalasin D had little effect on the action potential duration and on its transmural gradient, and did not slow the transmural velocity of excitation propagation. Cytochalasin D can be used to uncouple excitation and contraction in perfused canine cardiac muscle for the fluorescent-optical mapping of action potentials without affecting action potential duration or slowing transmural propagation.

MeSH Terms
Action Potentials/drug effects,physiology Animals Coronary Circulation/drug effects Cytochalasin D/pharmacology Dogs Electrophysiology/methods Fluorescent Dyes Heart/drug effects,physiology Myocardial Contraction/drug effects,physiology Optics and Photonics Research Design Uncoupling Agents/pharmacology Ventricular Function/drug effects
Chemicals
Fluorescent Dyes Uncoupling Agents Cytochalasin D
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Wu J
Krannert Institute of Cardiology, Indiana University Medical School, Indianapolis, USA. [email protected]
Biermann M
Rubart M
Zipes D P
Article Info
Journal
Journal of cardiovascular electrophysiology
Abbr.
J Cardiovasc Electrophysiol
ISSN
1045-3873
Published
1998-12-00
Pages
1336-47
Language
English
Region
United States
NLM ID
9010756
Subset
IM
Grants
NHLBI NIH HHS · HL-52323 · United States
Corrections
CommentIn
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