Ion currents underlying sinoatrial node pacemaker activity: A new single cell mathematical model

被引:102
作者
Dokos, S
Celler, B
Lovell, N
机构
[1] UNIV NEW S WALES,SCH ELECT ENGN,BIOMED SYST LAB,SYDNEY,NSW 2052,AUSTRALIA
[2] UNIV NEW S WALES,GRAD SCH BIOMED ENGN,SYDNEY,NSW 2052,AUSTRALIA
关键词
D O I
10.1006/jtbi.1996.0129
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The ionic currents underlying autorhythmicity of the mammalian sinoatrial node and their wider contribution to each phase of the action potential have been investigated in this study using a new single cell mathematical model. The new model provides a review and update of existing formulations of sinoatrial node membrane currents, derived from a wide range of electrophysiological data available in the literature. Simulations of spontaneous activity suggest that the dominant mechanism underlying pacemaker depolarisation is the inward background Na+ current, i(b,Na). In contrast to previous models, the decay of the delayed rectifying K+ current, i(K), was insignificant during this phase. Despite the presence of a pseudo-outward background current throughout the pacemaker range of potentials (Na-K pump + leak currents), the hyperpolarisation-activated current i(f) was not essential to pacemaker activity. A closer inspection of the current-voltage characteristics of the model revealed that the ''instantaneous'' time-independent current was inward for holding potentials in the pacemaker range, which rapidly became outward within 2 ms due to the inactivation of the L-type Ca2+ current, i(Ca,L). This suggests that reports in the literature in which the net background current is outward throughout the pacemaker range of potentials may be exaggerated. The magnitudes of the action potential overshoot and the maximum diastolic potential were determined largely by the reversal potentials of i(Ca,L) and i(K) respectively. The action potential was sustained by the incomplete deactivation of i(Ca,L) and the Na-Ca exchanger, in i(NaCa). Despite the incorporation of ''square-root'' activation by [K](o) of all K+ currents, the model was unable to correctly simulate the response to elevated [K](o). (C) 1996 Academic Press Limited.
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页码:245 / 272
页数:28
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