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蛙皮上皮细胞中体积与钠离子转运的偶联

Coupling of volume and Na+ transport in frog skin epithelium.

作者信息

Tang C S, Peterson-Yantorno K, Civan M M

机构信息

Department of Bioengineering, University of Pennsylvania, Philadelphia 19104-6085.

出版信息

Biol Cell. 1989;66(1-2):183-90.

PMID:2804459
Abstract

Whole skins and isolated epithelia were bathed with isotonic media (congruent to 244 mOsm) containing sucrose or glucose. The serosal osmolality was intermittently reduced (congruent to 137 mOsm) by removing the nonelectrolyte. Transepithelial and intracellular electrophysiological parameters were monitored while serosal osmolality was changed. Serosal hypotonicity increased the short-circuit current (ISC) and the basolateral conductance, hyperpolarized the apical membrane (psi mc), and increased the intracellular Na+ concentration. The increases in apical conductance and apical Na+ permeability (measured from Goldman fits of the relationship between amiloride-sensitive current and psi mc) were not statistically significant. To verify that the osmotically induced changes in ISC were mediated primarily at the basolateral membrane, the basolateral membrane potential of the experimental area was clamped close to 0 mV by replacing the serosal Na+ with K+ in Cl--free media. The adjoining control area was exposed to serosal Na+. Serosal hypotonicity produced a sustained stimulation of ISC across the control, but not across the adjoining depolarized tissue area. The current results support the concept that hypotonic cell swelling increases Na+ transport across frog skin epithelium by increasing the basolateral K+ permeability, hyperpolarizing the apical membrane, and increasing the electrical driving force for apical Na+ entry.

摘要

完整皮肤和分离的上皮组织用含有蔗糖或葡萄糖的等渗介质(相当于244 mOsm)进行浸泡。通过去除非电解质,浆膜渗透压间歇性降低(相当于137 mOsm)。在改变浆膜渗透压的同时,监测跨上皮和细胞内的电生理参数。浆膜低渗增加短路电流(ISC)和基底外侧电导,使顶端膜超极化(ψmc),并增加细胞内Na+浓度。顶端电导和顶端Na+通透性的增加(根据阿米洛利敏感电流与ψmc之间关系的戈德曼拟合测量)无统计学意义。为了验证渗透压诱导的ISC变化主要是在基底外侧膜介导的,通过在无Cl-的介质中用K+替代浆膜Na+,将实验区域的基底外侧膜电位钳制在接近0 mV。相邻的对照区域暴露于浆膜Na+。浆膜低渗在对照区域产生了对ISC的持续刺激,但在相邻的去极化组织区域则没有。目前的结果支持这样一种概念,即低渗性细胞肿胀通过增加基底外侧K+通透性、使顶端膜超极化以及增加顶端Na+进入的电驱动力,从而增加Na+跨青蛙皮肤上皮的转运。

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