首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Intracellular chloride activities in canine tracheal epithelium. Direct evidence for sodium-coupled intracellular chloride accumulation in a chloride-secreting epithelium.
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Intracellular chloride activities in canine tracheal epithelium. Direct evidence for sodium-coupled intracellular chloride accumulation in a chloride-secreting epithelium.

机译:犬气管上皮细胞内的氯化物活性。钠耦合的细胞内氯化物在分泌氯化物的上皮细胞中积累的直接证据。

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摘要

Canine tracheal epithelium secretes Cl via an electrogenic transport process that appears to apply to a wide variety of secretory epithelia. To examine the mechanisms involved, intracellular chloride activity, acCl, was measured with Cl-selective intracellular microelectrodes. The results indicate that when the rate of secretion was minimal acCl was 37 mM; with stimulation of secretion the intracellular voltage depolarized, but acCl was not significantly altered, at 39 mM. These findings indicate that: (a) Cl is accumulated across the basolateral membrane under nonsecreting and secreting conditions at an activity 3.8 and 2.4 times, respectively, that predicted for an equilibrium distribution; (b) Cl exit across the apical membrane may be passive with an electrochemical driving force of 22 mV; and (c) stimulation of secretion enhanced the rate of Cl entry across the basolateral membrane, since Cl transport increased without a change in acCl. In the absence of Na in the extracellular fluid, acCl approached the value expected for an equilibrium distribution. This finding suggests that "uphill" entry of Cl into the cell against its electrochemical gradient is dependent upon, and energized by, the entry of Na down its gradient. Submucosal bumetanide, a loop diuretic, also decreased the rate of Cl secretion and decreased acCl, indicating an inhibition of Cl entry. These findings indicate that Cl entry into the cell is directed against its electrochemical gradient and is mediated by a Na-coupled, bumetanide-inhibitable, transport process at the basolateral membrane and that Cl may exit passively down a favorable electrochemical gradient across the apical membrane.
机译:犬气管上皮细胞通过似乎适用于多种分泌上皮细胞的电转运过程分泌Cl。为了检查涉及的机制,用Cl-选择性​​细胞内微电极测量细胞内氯化物活性acCl。结果表明,当分泌速率最小时,acCl为37 mM;随着分泌的刺激,细胞内电压去极化,但acCl在39 mM时没有明显改变。这些发现表明:(a)在非分泌和分泌条件下,Cl在整个基底外侧膜上积聚,其活性分别为预测的平衡分布的3.8和2.4倍; (b)穿过顶膜的Cl出口可能是被动的,电化学驱动力为22 mV; (c)刺激分泌增加了Cl跨基底外侧膜进入的速率,因为Cl的转运增加了,而acCl却没有变化。在细胞外液中不存在Na的情况下,acCl接近平衡分布的预期值。该发现表明,Cl沿其电化学梯度“向上”进入电池的过程取决于Na沿其梯度向下的进入并由其激发。环利尿剂粘膜布美他尼也降低了Cl的分泌速率并降低了acCl,表明对Cl的进入有抑制作用。这些发现表明Cl进入细胞是针对其电化学梯度的,并且是由在基底外侧膜上的Na偶联的,布美他尼抑制剂可抑制的转运过程介导的,并且Cl可以沿着整个顶膜向下沿有利的电化学梯度被动地离开。

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