Volders P G, Sipido K R, Carmeliet E, Spätjens R L, Wellens H J, Vos M A
Department of Cardiology, Cardiovascular Research Institute Maastricht, Maastricht University, The Netherlands.
Circulation. 1999 Jan 19;99(2):206-10. doi: 10.1161/01.cir.99.2.206.
The ventricular action potential exhibits regional heterogeneity in configuration and duration (APD). Across the left ventricular (LV) free wall, this is explained by differences in repolarizing K+ currents. However, the ionic basis of electrical nonuniformity in the right ventricle (RV) versus the LV is poorly investigated. We examined transient outward (ITO1), delayed (IKs and IKr), and inward rectifier K+ currents (IK1) in relation to action potential characteristics of RV and LV midmyocardial (M) cells of the same adult canine hearts.
Single RV and LV M cells were used for microelectrode recordings and whole-cell voltage clamping. Action potentials showed deeper notches, shorter APDs at 50% and 95% of repolarization, and less prolongation on slowing of the pacing rate in RV than LV. ITO1 density was significantly larger in RV than LV, whereas steady-state inactivation and rate of recovery were similar. IKs tail currents, measured at -25 mV and insensitive to almokalant (2 micromol/L), were considerably larger in RV than LV. IKr, measured as almokalant-sensitive tail currents at -50 mV, and IK1 were not different in the 2 ventricles.
Differences in K+ currents may well explain the interventricular heterogeneity of action potentials in M layers of the canine heart. These results contribute to a further phenotyping of the ventricular action potential under physiological conditions.
心室动作电位在形态和时程(动作电位时程,APD)上呈现区域异质性。在左心室(LV)游离壁,这种异质性可由复极化钾电流的差异来解释。然而,右心室(RV)与左心室电不均匀性的离子基础研究较少。我们研究了成年犬同一心脏右心室和左心室中层(M)细胞的瞬时外向电流(ITO1)、延迟整流钾电流(IKs和IKr)以及内向整流钾电流(IK1)与动作电位特征的关系。
采用单个右心室和左心室M细胞进行微电极记录和全细胞膜片钳记录。动作电位显示出更深的切迹,复极化50%和95%时的动作电位时程较短,且与左心室相比,右心室在起搏频率减慢时动作电位时程延长较少。右心室的ITO1密度显著大于左心室,而稳态失活和恢复速率相似。在-25 mV测量且对almokalant(2 μmol/L)不敏感的IKs尾电流,右心室明显大于左心室。在-50 mV测量的对almokalant敏感的IKr尾电流以及IK1在两个心室中无差异。
钾电流的差异很可能解释了犬心脏M层动作电位的心室间异质性。这些结果有助于在生理条件下进一步对心室动作电位进行表型分析。