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蛙心肌中钙电导与收缩性的关系

Calcium conductance in relation to contractility in frog myocardium.

作者信息

Horackova M, Vassort G

出版信息

J Physiol. 1976 Aug;259(3):597-616. doi: 10.1113/jphysiol.1976.sp011485.

Abstract
  1. Ca inward current and the corresponding phasic component of tension were measured in frog atrial muscle under voltage-clamp conditions in Na-free (Li) Ringer solution with tetrodotoxin (TTX) added. 2. The quantity of Ca ions entering the cell upon depolarization, delta[Ca]i, was linearly related to peak phasic tension. 3. The voltage dependence of the steady-state inactivation of the Ca-carrying system, f infinity, against voltage yielded similar relationships whether determined directly from variations of Ca inward current or peak phasic tension. The Ca system was almost fully available at potentials more negative than -45 mV and almost fully inactivated at potentials more positive than +10 mV. 4. It was established that the time- and voltage-dependence of Ca current and of phasic tension are directly related. The time constants of Ca activation, tau f, were comparable in the range of membrane potential investigated (-20 to +25 mV), whether determined directly from the decay of Ca current or indirectly from peak phasic tension. 5. It was concluded that the Ca current, ICa, directly activates phasic contraction and that either parameter can be used as an indicator of the kinetics of the Ca-carrying system. Peak phasic tension was used to determine tau f further in the membrane potential range in which interference by other membrane currents renders direct analysis of Ca current difficult. 6. The tau f against voltage relationship determined from phasic tension showed that the inactivation process of the Ca-carrying system is slowest at membrane potentials around -13 mV (tau f = 55 msec) and that the rate of inactivation increases with both increasing and decreasing depolarizations. 7. It is suggested that normal repolarization in frog myocardium depends mainly on the decay of Ca inward current rather than on an increase of outward current.
摘要
  1. 在添加了河豚毒素(TTX)的无钠(锂)林格氏液中,于电压钳制条件下测量蛙心房肌中的钙内向电流和相应的张力相位成分。2. 去极化时进入细胞的钙离子数量Δ[Ca]i与峰值相位张力呈线性相关。3. 无论直接根据钙内向电流的变化还是峰值相位张力来确定,钙转运系统稳态失活的电压依赖性f∞与电压的关系相似。在比 -45 mV更负的电位下,钙系统几乎完全可用;在比 +10 mV更正的电位下,几乎完全失活。4. 已确定钙电流和相位张力的时间和电压依赖性直接相关。钙激活的时间常数τf在所研究的膜电位范围内(-20至 +25 mV)相当,无论是直接根据钙电流的衰减还是间接根据峰值相位张力来确定。5. 得出的结论是,钙电流ICa直接激活相位收缩,并且这两个参数都可作为钙转运系统动力学的指标。在其他膜电流干扰使钙电流的直接分析变得困难的膜电位范围内,使用峰值相位张力进一步确定τf。6. 根据相位张力确定的τf与电压的关系表明,钙转运系统的失活过程在膜电位约为 -13 mV时最慢(τf = 55毫秒),并且失活速率随着去极化的增加和减少而增加。7. 有人提出,蛙心肌中的正常复极化主要取决于钙内向电流的衰减,而不是外向电流的增加。

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