...
首页> 外文期刊>The Journal of Physiology >Ca2+ influx via the L-type Ca2+ channel during tail current and above current reversal potential in ferret ventricular myocytes.
【24h】

Ca2+ influx via the L-type Ca2+ channel during tail current and above current reversal potential in ferret ventricular myocytes.

机译:在尾电流和高于电流反向电位的白鼬心室肌细胞中,Ca2 +通过L型Ca2 +通道流入。

获取原文
获取原文并翻译 | 示例
           

摘要

1. Current through L-type Ca2+ channels (ICa) was measured electrophysiologically at the same time as Ca2+ influx was measured by trapping entering Ca2+ with a high concentration of indo-1 (> 1 mM) in ferret ventricular myocytes. 2. Na+-free conditions prevented Na+-Ca2+ exchange and K+ currents were blocked by Cs+ and TEA. Thapsigargin (5 microM) prevented Ca2+ uptake and release by the sarcoplasmic reticulum. ICa was pre-activated by brief pulses to +120 mV (the equilibrium potential for Ca2+, ECa), followed by steps to different membrane potentials (Em, -80 to +100 mV), in some cases in the presence of the Ca2+ channel agonist FPL-64176. 3. Integrated ICa ( 82 ICa) was linearly related to the change in the concentration of Ca2+ bound to indo-1, which was assessed by the fluorescence difference signal DeltaFd (Fd = F500 - F400). This created an internal calibration of DeltaFd as a measure of Ca2+ influx. 4. The DeltaFd/ 82 ICadt relationship was virtually unchanged at all measurable inward ICa (at Em from -80 to +50 mV). This indicates that the fractional current carried by Ca2+ and channel selectivity are unchanged over this Em range, and also that the selectivity for Ca2+ is very high. 5. Ca2+ influx was readily detected by DeltaFd beyond the ICa reversal potential (+65 to +100 mV) and was not abolished until Em was +120 mV (i.e. ECa). This is explained by the fact that inward Ca2+ flux at the ICa reversal potential is exactly balanced by outward Cs+ current through the Ca2+ channels and can be described by classic Goldman flux analysis with a Ca2+/Cs+ selectivity of the order of 5000. 6. This result also emphasizes that net Ca2+ influx via Ca2+ channels occurs over a voltage range where the net channel current is outward.
机译:1.通过电生理学测量流经L型Ca2 +通道(ICa)的电流,同时通过以高浓度的indo-1(> 1 mM)捕获进入的Ca2 +进入雪貂心室肌细胞,从而测量Ca2 +的流入。 2.不含Na +的条件阻止了Na + -Ca2 +交换,并且Ks电流被Cs +和TEA阻止。 Thapsigargin(5 microM)阻止了肌浆网对Ca2 +的吸收和释放。通过短暂脉冲将ICa预先激活至+120 mV(Ca2 +的平衡电位,ECa),然后逐步提高至不同的膜电位(Em,-80至+100 mV),有时在存在Ca2 +通道的情况下激动剂FPL-64176。 3.积分的ICa(82 ICa)与与indo-1结合的Ca2 +浓度的变化呈线性关系,该变化由荧光差异信号DeltaFd(Fd = F500-F400)评估。这创建了DeltaFd的内部校准,作为对Ca2 +流入量的度量。 4.在所有可测量的向内ICa(从-80到+50 mV的Em处),DeltaFd / 82 ICadt关系几乎不变。这表明Ca2 +携带的分流电流和通道选择性在这个Em范围内没有变化,并且对Ca2 +的选择性非常高。 5. DeltaFd可以轻易地检测到Ca2 +流入量超过ICa反转电位(+65至+100 mV),并且直到Em为+120 mV(即ECa)时才被消除。这可以通过以下事实来解释:在ICa反转电位处的向内Ca2 +通量与通过Ca2 +通道的向外Cs +电流完全平衡,并且可以通过经典的高盛通量分析进行描述,其Ca2 + / Cs +选择性为5000左右。6.这是事实。结果还强调,通过Ca2 +通道的净Ca2 +流入发生在净通道电流向外的电压范围内。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号