Fox J A, Steinberg R H
Department of Physiology, University of California, San Francisco 94143.
Pflugers Arch. 1992 Apr;420(5-6):451-60. doi: 10.1007/BF00374619.
The electrophysiological properties of isolated turtle retinal pigment epithelial cells (RPE cells) were investigated using the whole-cell patch-clamp technique. Most RPE cells exhibited a voltage-dependent outward current activated by depolarization beyond about -43 mV that inactivated during a 500-ms voltage step. Tail current measurements indicated that the conductance underlying this current was potassium selective. This current inactivated with prolonged depolarization and was abolished or reduced by extracellular quinidine, barium, tetraethylammonium (TEA) and 4-aminopyridine (4-AP). Steady-state inactivation of the voltage-dependent outward current revealed a time-independent outwardly rectifying current/voltage relationship in many cells. In addition, many cells had an outward current that activated slowly upon depolarization beyond about +40 mV and appeared to reverse near 0 mV in both 3 mM KCl and 30 mM KCl external solutions. This current was often observed in the presence of potassium channel blockers. Hyperpolarizing pulses commonly evoked inward currents that activated slowly and did not inactivate. These currents were commonly observed when fluoride was absent from the pipette, and only occasionally when fluoride was the major pipette anion. Tail current measurements indicated that this current was somewhat anion selective. These currents may play important roles in the homeostatic and phagocytic functions of RPE cells in their interactions with the neural retina.
采用全细胞膜片钳技术研究了分离的乌龟视网膜色素上皮细胞(RPE细胞)的电生理特性。大多数RPE细胞表现出一种电压依赖性外向电流,该电流在去极化超过约-43 mV时被激活,并在500 ms的电压阶跃期间失活。尾电流测量表明,该电流的基础电导具有钾选择性。该电流随着去极化时间延长而失活,并被细胞外奎尼丁、钡、四乙铵(TEA)和4-氨基吡啶(4-AP)消除或减弱。电压依赖性外向电流的稳态失活在许多细胞中显示出与时间无关的外向整流电流/电压关系。此外,许多细胞具有一种外向电流,该电流在去极化超过约+40 mV时缓慢激活,并且在3 mM KCl和30 mM KCl的外部溶液中似乎在接近0 mV时反转。在存在钾通道阻滞剂的情况下经常观察到这种电流。超极化脉冲通常诱发缓慢激活且不失活的内向电流。当移液管中不存在氟化物时,这些电流经常被观察到,而当氟化物是移液管中的主要阴离子时,只是偶尔观察到。尾电流测量表明,该电流具有一定的阴离子选择性。这些电流可能在RPE细胞与神经视网膜相互作用的稳态和吞噬功能中发挥重要作用。