Lawrence C L, Rodrigo G C
Department of Physiology, Otago Medical School, University of Otago, Dunedin, New Zealand.
Pflugers Arch. 2001 Jul;442(4):595-602. doi: 10.1007/s004240100569.
Activation of the Na+-activated K+ channels (KNa channels) has been suggested to contribute to the ischaemia-induced accumulation of extracellular K+ (K+e) in the mammalian myocardium. Recent evidence shows that these channels are not present in rat ventricular myocytes [9]. We have therefore investigated the effect of raised intracellular Na+ activity (aiNa) on intracellular K+ activity (aiK) in guinea-pig myocytes, which possess the channels, and on rat ventricular myocytes which do not. The Na+-activated K+ current was activated by an increase in aiNa induced by removing extracellular Ca2+ and Mg2+ and inhibiting the Na-pump. The aiNa increased and the aiK decreased in both guinea-pig and rat myocytes superfused with Ca2+- and Mg2+-free Tyrode. The new steady-state increase in aiNa and decline in aiK were similar in both species. Inhibition of the Na-pump resulted in an additional increase in aiNa and decrease in aiK in both species. However, both the increase in aiNa and decrease in aiK were greater in guinea-pig myocytes and the decline in aiK in guinea-pig myocytes followed the development of a large Na+-activated K+ current. When Li+ replaced Na+ in the superfusate the Na+-activated K+ current did not develop and the fall in aiK was reduced. In Na+-loaded rat myocytes, which do not have a Na+-activated K+ current, the decline in aiK was reduced and blocked by 2 mM Mg2+ suggesting that a Mg2+-sensitive non-specific cation channel may be involved in the K+ efflux from rat myocytes [12]. These data suggest that KNa channels are a major route for K+ efflux from Na+-loaded guinea-pig myocytes.
钠激活钾通道(KNa通道)的激活被认为与哺乳动物心肌缺血诱导的细胞外钾(K+e)积累有关。最近的证据表明,这些通道不存在于大鼠心室肌细胞中[9]。因此,我们研究了细胞内钠活性(aiNa)升高对豚鼠心肌细胞(具有该通道)和大鼠心室肌细胞(不具有该通道)内钾活性(aiK)的影响。钠激活钾电流通过去除细胞外Ca2+和Mg2+并抑制钠泵诱导的aiNa增加而被激活。在无Ca2+和Mg2+的台氏液中灌流的豚鼠和大鼠心肌细胞中,aiNa升高而aiK降低。两种物种中aiNa的新稳态增加和aiK的下降相似。抑制钠泵导致两种物种的aiNa进一步增加和aiK进一步降低。然而,豚鼠心肌细胞中aiNa的增加和aiK的降低更大,并且豚鼠心肌细胞中aiK的下降伴随着大的钠激活钾电流的出现。当Li+替代灌流液中的Na+时,钠激活钾电流未出现,aiK的下降减少。在没有钠激活钾电流的钠负荷大鼠心肌细胞中,aiK的下降减少并被2 mM Mg2+阻断,这表明Mg2+敏感的非特异性阳离子通道可能参与大鼠心肌细胞的钾外流[12]。这些数据表明,KNa通道是钠负荷豚鼠心肌细胞钾外流的主要途径。