首页> 外文期刊>The Journal of Physiology >Extracellular divalent cations block a cation non-selective conductance unrelated to calcium channels in rat cardiac muscle.
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Extracellular divalent cations block a cation non-selective conductance unrelated to calcium channels in rat cardiac muscle.

机译:细胞外二价阳离子会阻断与大鼠心肌钙通道无关的阳离子非选择性电导。

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1. The effect of removing extracellular divalent cations on resting potential (Vrest) and background conductance of rat cardiac muscle was studied. Vrest was measured with 3 M KCl-filled microelectrodes in papillary muscles, or with a patch electrode in ventricular myocytes. Whole-cell membrane currents were measured in myocytes using step or ramp voltage commands. 2. In both muscles and single cells, decrease or removal of Ca2+o and Mg2+o caused a nifedipine-resistant depolarization, which was reversed upon readmission of Ca2+o or Mg2+o (half-maximal effect at 0.8 mM Ca2+o or 3 mM Mg2+o in muscles). 3. In single myocytes, removal of Ca2+o and Mg2+o had no effect on the seal resistance in nonruptured cell-attached recordings, but reversibly induced a current with a reversal potential (Vrev) of -8 +/- 3.4 mV (with internal Cs+; mean +/- S.E.M., n = 23) during whole-cell recordings. The current was insensitive to nifedipine (3-100 microM) or amiloride (1 mM). Vrev was insensitive to changes in the equilibrium potential for chloride ions (ECl). 4. The current induced in the absence of extracellular divalent cations was blocked in a concentration-dependent manner by Ca2+o. (At -80 mV, the affinity constant KCa was 60 microM with a Hill coefficient of 0.9) KCa was voltage dependent at positive but not negative potentials. Mg2+o, Ni2+o, Sr2+o, Ba2+o, Cd2+o and Gd3+o also blocked the current. 5. In 0 mM Na+ (145 mM NMDG+), the inward component of the divalent cation-sensitive current was decreased and Vrev shifted to more negative potentials. 6. These results suggest that a novel conductance pathway, permeable to monovalent cations but not to Cl- and blocked by divalent cations, exists in ventricular myocytes.
机译:1.研究了去除细胞外二价阳离子对大鼠心肌静息电位(Vrest)和本底电导的影响。在乳头肌中用3 M KCl填充微电极或在心室肌细胞中使用贴片电极测量Vrest。使用步进或斜坡电压命令在心肌细胞中测量全细胞膜电流。 2.在肌肉和单细胞中,Ca2 + o和Mg2 + o的减少或去除都会引起耐硝苯地平的去极化作用,在重新吸收Ca2 + o或Mg2 + o时会逆转(在0.8 mM Ca2 +处达到最大的一半作用) o或3 mM Mg2 + o在肌肉中)。 3.在单个心肌细胞中,去除Ca2 + o和Mg2 + o对未破裂的细胞附着记录的密封阻力没有影响,但是可逆地诱导产生的电流的反向电位(Vrev)为-8 +/- 3.4 mV(在整个细胞记录过程中具有内部Cs +;平均值+/- SEM,n = 23)。电流对硝苯地平(3-100 microM)或阿米洛利(1 mM)不敏感。 Vrev对氯离子(EC1)平衡电位的变化不敏感。 4. Ca2 + o以浓度依赖的方式阻断了在不存在细胞外二价阳离子的情况下诱导产生的电流。 (在-80 mV时,亲和常数KCa为60 microM,希尔系数为0.9)KCa在正电位而不是负电位上依赖电压。 Mg2 + o,Ni2 + o,Sr2 + o,Ba2 + o,Cd2 + o和Gd3 + o也阻止了电流。 5.在0 mM Na +(145 mM NMDG +)中,二价阳离子敏感电流的内向分量减少,Vrev移至更多负电位。 6.这些结果表明,心室肌细胞中存在一种新的电导途径,该途径可渗透单价阳离子但不能渗透Cl-,并被二价阳离子阻断。

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