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蛙皮中活性钠转运的氯离子依赖性:细胞间隙的作用。

Chloride dependence of active sodium transport in frog skin: the role of intercellular spaces.

作者信息

Ferreira K T, Hill B S

出版信息

J Physiol. 1978 Oct;283:283-305. doi: 10.1113/jphysiol.1978.sp012500.

Abstract
  1. In agreement with previous observations the replacement of Cl by a nonpenetrating anion in the solution bathing either the outside or both sides of the frog skin causes a fall in the short-circuit current. 2. When Cl is replaced by a non-penetrating anion in the solution bathing the outside of the frog skin the Isc is still a correct measure of the net Na transport. 3. Under the same conditions both active and shunt paths seem to be affected since there is a decrease in Isc, Na influx, amiloride-dependent conductance, and initial Na uptake across the external barrier, together with a decrease in Cl-backfluxes and amiloride-independent conductance. There is also a decrease in water permeability and a reduction in size of the intercellular spaces. 4. The removal of Cl does not appear to affect the entry step of Na but may have an effect on the shunt path. This in turn may change the active Na transport.
摘要
  1. 与先前的观察结果一致,在浸泡青蛙皮肤外侧或两侧的溶液中用非渗透性阴离子取代氯离子会导致短路电流下降。2. 当在浸泡青蛙皮肤外侧的溶液中用非渗透性阴离子取代氯离子时,短路电流仍是净钠转运的正确指标。3. 在相同条件下,主动转运途径和旁路似乎都受到影响,因为短路电流、钠内流、氨氯地平依赖性电导以及跨外部屏障的初始钠摄取均减少,同时氯回流和氨氯地平非依赖性电导也减少。水通透性也降低,细胞间隙尺寸减小。4. 去除氯离子似乎不影响钠的进入步骤,但可能对旁路有影响。这进而可能改变主动钠转运。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4e1/1282777/3ca5add80cd7/jphysiol00761-0310-a.jpg

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