Reinach P, Nagel W
J Membr Biol. 1985;87(3):201-9. doi: 10.1007/BF01871219.
The ionic dependencies of the transepithelial and intracellular electrical parameters were measured in the isolated frog cornea. In NaCl Ringer's the intracellular potential difference Vsc measured under short-circuit conditions depolarized by nearly the same amount after either increasing the stromal-side KCl concentration from 2.5 to 25 mM or exposure to 2 mM BaCl2 (K+ channel blocker). With Ba2+ the depolarization of the Vsc by 25 mM K+ was reduced to one-quarter of the control change. If the Cl-permselective apical membrane resistance Ro remained unchanged, the relative basolateral membrane resistance Ri, which includes the lateral intercellular space, increased at the most by less than twofold after Ba2+. These effects in conjunction with the depolarization of the Vsc by 62 mV after increasing the stromal-side K+ from 2.5 to 100 mM in Cl-free Ringer's as well as the increase of the apparent ratio of membrane resistances (a = Ro/Ri) from 13 to 32 are all indicative of an appreciable basolateral membrane K+ conductance. This ratio decreased significantly after exposure to either 25 mM K+ or Ba2+. The decline of Ro/Ri with 25 mM K+ appears to be anomalous since this decrease is not consistent with just an increase of basolateral membrane conductance by 25 mM K+, but rather perhaps a larger decrease of Ro than Ri. Also an increase of lateral space resistance may offset the effect of decreasing Ri with 25 mM K+. In contrast, Ro/Ri did transiently increase during voltage clamping of the apical membrane potential difference Vo and exposure to 25 mM K+ on the stromal side.(ABSTRACT TRUNCATED AT 250 WORDS)
在离体青蛙角膜中测量了跨上皮和细胞内电参数的离子依赖性。在氯化钠林格氏液中,在短路条件下测量的细胞内电位差Vsc,在将基质侧氯化钾浓度从2.5 mM增加到25 mM或暴露于2 mM氯化钡(钾通道阻滞剂)后,去极化程度几乎相同。使用钡离子时,25 mM钾离子引起的Vsc去极化减少到对照变化的四分之一。如果氯离子选择性顶端膜电阻Ro保持不变,包括细胞间外侧间隙的相对基底外侧膜电阻Ri在加入钡离子后最多增加不到两倍。这些效应,连同在无氯林格氏液中将基质侧钾离子从2.5 mM增加到100 mM后Vsc去极化62 mV,以及膜电阻表观比值(a = Ro/Ri)从13增加到32,都表明基底外侧膜有明显的钾离子电导。暴露于25 mM钾离子或钡离子后,该比值显著下降。25 mM钾离子导致的Ro/Ri下降似乎是异常的,因为这种下降与基底外侧膜电导仅因25 mM钾离子增加不一致,而可能是Ro的下降幅度大于Ri。此外,外侧间隙电阻的增加可能抵消25 mM钾离子导致的Ri下降的影响。相比之下,在顶端膜电位差Vo电压钳制期间以及基质侧暴露于25 mM钾离子时,Ro/Ri确实会短暂增加。(摘要截断于250字)