首页> 外文期刊>Journal of physiology and pharmacology: an official journal of the Polish Physiological Society >EFFECT OF THE INTRACELLULAR CALCIUM CONCENTRATION CHELATOR BAPTA ACETOXY-METHYLESTER ON ACTION POTENTIAL DURATION IN CANINE VENTRICULAR MYOCYTES
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EFFECT OF THE INTRACELLULAR CALCIUM CONCENTRATION CHELATOR BAPTA ACETOXY-METHYLESTER ON ACTION POTENTIAL DURATION IN CANINE VENTRICULAR MYOCYTES

机译:鞘内钙离子浓度调节剂BAPTA对乙脑的影响对犬心室肌细胞动作电位时间的影响

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Intracellular calcium concentration ([Ca2+]i) is often buffered by using the cell-permeant acetoxy-methylester form of the Ca2+ chelator BAPTA (BAPTA-AM) under experimental conditions. This study was designed to investigate the time-dependent actions of extracellularly applied BAPTA-AM on action potential duration (APD) in cardiac cells. Action potentials were recorded from enzymatically isolated canine ventricular myocytes with conventional sharp microelectrodes. The effect of BAPTA-AM on the rapid delayed rectifier K+ current (IKr) was studied using conventional voltage clamp and action potential voltage clamp techniques. APD was lengthened by 5 μM BAPTA-AM - but not by BAPTA - and shortened by the Ca2+ ionophore A23187 in a time-dependent manner. The APD-lengthening effect of BAPTA-AM was strongly suppressed in the presence of nisoldipine, and enhanced in the presence of BAY K8644, suggesting that a shift in the [Ca2+]i-dependent inactivation of L-type Ca2+ current may be an important underlying mechanism. However, in the presence of the IKr-blocker dofetilide or E-4031 APD was shortened rather than lengthened by BAPTA-AM. Similarly, the APD-lengthening effect of 100 nM dofetilide was halved by the pretreatment with BAPTA-AM. In line with these results, IKr was significantly reduced by extracellularly applied BAPTA-AM under both conventional voltage clamp and action potential voltage clamp conditions. This inhibition of IKr was partially reversible and was not related to the Ca2+chelator effect BAPTA-AM. The possible mechanisms involved in the APD-modifying effects of BAPTA-AM are discussed. It is concluded that BAPTA-AM has to be applied carefully to control [Ca2+]i in whole cell systems because of its direct inhibitory action on IKr.
机译:在实验条件下,通常使用Ca2 +螯合剂BAPTA(BAPTA-AM)的细胞渗透性乙酰氧基甲基酯形式来缓冲细胞内钙浓度([Ca2 +] i)。本研究旨在研究细胞外应用BAPTA-AM对心脏细胞动作电位持续时间(APD)的时间依赖性作用。用常规锋利的微电极从酶法分离的犬心室肌细胞中记录动作电位。使用常规电压钳位和动作电位电压钳位技术研究了BAPTA-AM对快速延迟整流器K +电流(IKr)的影响。 APD通过5μMBAPTA-AM延长,但没有通过BAPTA-延长,并且通过Ca2 +离子载体A23187以时间依赖性方式缩短。在尼索地平的存在下,BAPTA-AM的APD延长作用被强烈抑制,而在BAY K8644的存在下,APD延长作用被增强,表明L型Ca2 +电流的[Ca2 +] i依赖性失活的转变可能是重要的底层机制。但是,在IKr受体阻滞剂多贝替利或E-4031 APD的存在下,BAPTA-AM可以缩短而不是延长。类似地,通过用BAPTA-AM进行预处理,将100 nM dofetilide的APD延长效果减半。与这些结果一致,在常规电压钳位和动作电位电压钳位条件下,细胞外施用BAPTA-AM均可显着降低IKr。 IKr的这种抑制作用是部分可逆的,并且与Ca2 +螯合剂效应BAPTA-AM无关。讨论了涉及BAPTA-AM的APD修饰作用的可能机制。结论是,由于BAPTA-AM对IKr具有直接抑制作用,因此必须谨慎地应用BAPTA-AM来控制整个细胞系统中的[Ca2 +] i。

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