Harris G L, Betz W J
J Gen Physiol. 1987 Jul;90(1):127-44. doi: 10.1085/jgp.90.1.127.
Intracellular Cl- activity (aiCl) was measured with Cl(-)-sensitive microelectrodes in normal and denervated rat lumbrical muscle. In normal muscle bathed in normal Krebs solution, aiCl lay close to that predicted by the Nernst equation. The addition of 9-anthracene carboxylic acid, which blocks Cl- conductance, caused aiCl to increase far above that predicted by a passive distribution. Furosemide (10 microM) reversibly blocked this accumulation. After muscle denervation, aiCl progressively increased for 1-2 wk. The rise occurred in two stages. The initial stage (1-3 d after denervation) reflected passive Cl- accumulation owing to membrane depolarization. At later times, aiCl continued to increase, with no further change in membrane potential, which suggests an active uptake mechanism. This rise approximately coincided with the natural reduction in membrane conductance to Cl- that occurs several days after denervation. Na+ replacement, K+ replacement, and furosemide each reversibly blocked the active Cl- accumulation in denervated muscle. Quantitative estimates suggested that there was little difference between Cl- flux rates in normal and denervated muscles. The results can be explained by assuming that, in normal muscle, an active accumulation mechanism operates, but that Cl- lies close to equilibrium owing to the high membrane conductance to Cl-. The rise in aiCl after denervation can be accounted for by the membrane depolarization, the reduction in membrane Cl- conductance, and the nearly unaltered action of an inwardly directed Cl- "pump."
用氯离子敏感微电极测量正常和去神经大鼠蚓状肌的细胞内氯离子活性(aiCl)。在正常Krebs溶液中浸泡的正常肌肉中,aiCl接近能斯特方程预测的值。添加能阻断氯离子电导的9-蒽甲酸会使aiCl升高至远高于被动分布预测的值。呋塞米(10 microM)可逆转这种积累。肌肉去神经后,aiCl在1至2周内逐渐增加。这种升高分两个阶段发生。初始阶段(去神经后1至3天)反映了由于膜去极化导致的被动氯离子积累。在后期,aiCl继续增加,而膜电位没有进一步变化,这表明存在主动摄取机制。这种升高大约与去神经后几天发生的膜对氯离子电导的自然降低同时出现。钠离子替代、钾离子替代和呋塞米均可逆转去神经肌肉中氯离子的主动积累。定量估计表明,正常肌肉和去神经肌肉中的氯离子通量率几乎没有差异。这些结果可以通过以下假设来解释:在正常肌肉中,存在一种主动积累机制,但由于膜对氯离子的高电导,氯离子接近平衡状态。去神经后aiCl的升高可以由膜去极化、膜氯离子电导的降低以及向内的氯离子 “泵” 的作用几乎不变来解释。