首页> 美国卫生研究院文献>The Journal of General Physiology >Effects of ouabain on fluid transport and electrical properties of Necturus gallbladder. Evidence in favor of a neutral basolateral sodium transport mechanism
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Effects of ouabain on fluid transport and electrical properties of Necturus gallbladder. Evidence in favor of a neutral basolateral sodium transport mechanism

机译:哇巴因对Necturus胆囊的流体运输和电学性质的影响。支持中性基底外侧钠转运机制的证据

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摘要

Net fluid transport (Jv) and electrical properties of the cell membranes and paracellular pathway of Necturus gallbladder epithelium were studied before and after the addition of ouabain (10(-4) M) to the serosal bathing medium. The glycoside inhibited Jv by 70% in 15 min and by 100% in 30 min. In contrast, the potentials across both cell membranes did not decrease significantly until 20 min of exposure to ouabain. At 30 min, the basolateral membrane potential (Vcs) fell only by ca 7 mV. If basolateral Na transport were electrogenic, with a coupling ratio (Na:K) of 3:2, the reductions of Vcs at 15 and 30 min should be 12--15 and 17--21 mV, respectively. Thus, we conclude that the mechanism of Na transport from the cells to the serosal bathing solution is not electrogenic under normal transport conditions. The slow depolarization observed in ouabain is caused by a fall of intracellular K concentration, and by a decrease in basolateral cell membrane K permeability. Prolonged exposure to ouabain results also in an increase in paracellular K selectivity, with no change of P Na/P Cl.
机译:在向浆膜沐浴介质中添加哇巴因(10(-4)M)之前和之后,研究了Necturus胆囊上皮细胞的净流体运输(Jv)和电学特性以及细胞膜和旁细胞途径。糖苷在15分钟内抑制Jv达70%,在30分钟内抑制100%。相反,直到暴露于哇巴因20分钟后,两个细胞膜上的电势才显着降低。在30分钟时,基底外侧膜电位(Vcs)仅下降了约7 mV。如果基底外侧钠转运是电致的,且偶联比(Na:K)为3:2,则15和30分钟时Vcs的降低应分别为12--15和17--21 mV。因此,我们得出结论,在正常运输条件下,Na从细胞运输到浆膜浸润液的机制不是电致的。在哇巴因中观察到的缓慢去极化是由于细胞内钾浓度的下降和基底外侧细胞膜钾通透性的降低引起的。长时间接触哇巴因也导致细胞旁钾选择性增加,而P Na / P Cl不变。

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