DocumentCode
2819654
Title
Pinacidil-induced block of action potential propagation in ischaemic tissue: a simulation study
Author
Trenor, B. ; Ferrero, Jose M.
Author_Institution
Dept. de Ingenieria Electron., Univ. Politecnica de Valencia, Spain
fYear
2000
fDate
24-27 Sept. 2000
Firstpage
319
Lastpage
322
Abstract
During ischaemia, ATP-sensitive potassium current (I(K(ATP)))is activated in ventricular myocytes. The action potential (AP) duration becomes subsequently shorter in ischaemic zones, and inhomogeneities appear within the tissue, with possibility of propagation block and reentry. Pinacidil is a potassium channel opener, which has controversial effects. The aim of this study is to analize the mechanism of action by which this drug induces block of AP propagation. Simulations were carried out using a modified version of the Luo Rudy II model which included a formulation of (I(K(ATP))) and pinacidil effects. The simulated tissue included normal, border and central ischemic zones. From their results the authors hypothetize that AP propagation block occurs when calcium current is inactivated, due to pinacidil activation of I(K(ATP)) concomitant with sodium current depression.
Keywords
biochemistry; bioelectric potentials; calcium; cardiology; physiological models; potassium; sodium; Ca; K; Luo Rudy II model; Na; action potential propagation; calcium current inactivation; cardiac electrophysiology; cardiac reentry; drug; inhomogeneities; ischaemic tissue; ischaemic zone; pinacidil effects; pinacidil-induced block; potassium channel opener; simulation study; sodium current depression; Acceleration; Calcium; Differential equations; Drugs; Ischemic pain; Laboratories; Nonlinear equations; Pathology; Protocols; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Computers in Cardiology 2000
Conference_Location
Cambridge, MA
ISSN
0276-6547
Print_ISBN
0-7803-6557-7
Type
conf
DOI
10.1109/CIC.2000.898521
Filename
898521
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