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PÁSEK, M. ŠIMURDA, J. ORCHARD, C. CHRISTÉ, G.
Originální název
A model of the guinea-pig ventricular cardiac myocyte incorporating a transverse-axial tubular system
Typ
článek v časopise - ostatní, Jost
Jazyk
angličtina
Originální abstrakt
A model of the guinea-pig cardiac ventricular myocyte has been developed that includes a representation of the transverse-axial tubular system (TATS), including heterogeneous distribution of ion flux pathways between the surface and tubular membranes. The model reproduces frequency-dependent changes of action potential shape and intracellular ion concentrations and can replicate experimental data showing ion diffusion between the tubular lumen and external solution in guinea-pig myocytes. The model is stable at rest and during activity and returns to rested state after perturbation. Theoretical analysis and model simulations show that, due to tight electrical coupling, tubular and surface membranes behave as a homogeneous whole during voltage and current clamp (maximum difference 0.9 mV at peak tubular INa of -38 nA). However during action potentials, restricted diffusion and ionic currents in TATS cause depletion of tubular Ca2+ and accumulation of tubular K+ (up to -19.8 % and +3.4 % respectively of bulk extracellular values, at 6 Hz). These changes, in turn, decrease ion fluxes across the TATS membrane and decrease SR Ca2+ load. Thus, the TATS plays a potentially important role in modulating the function of guinea-pig ventricular myocyte in physiological conditions.
Klíčová slova
ion accumulation, ion depletion; extracellular space; TATS; restricted diffusion; quantitative model
Autoři
PÁSEK, M.; ŠIMURDA, J.; ORCHARD, C.; CHRISTÉ, G.
Rok RIV
2008
Vydáno
30. 11. 2007
Nakladatel
ISSN 0079-6107
Místo
Great Britain
ISSN
0079-6107
Periodikum
PROGRESS IN BIOPHYSICS & MOLECULAR BIOLOGY
Ročník
2007 (96)
Číslo
1-3
Stát
Spojené království Velké Británie a Severního Irska
Strany od
258
Strany do
280
Strany počet
23
BibTex
@article{BUT45341, author="Michal {Pásek} and Jiří {Šimurda}", title="A model of the guinea-pig ventricular cardiac myocyte incorporating a transverse-axial tubular system", journal="PROGRESS IN BIOPHYSICS & MOLECULAR BIOLOGY", year="2007", volume="2007 (96)", number="1-3", pages="258--280", issn="0079-6107" }