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人和猴视网膜色素上皮新鲜细胞及培养细胞中的全细胞钾电流。

Whole-cell K+ currents in fresh and cultured cells of the human and monkey retinal pigment epithelium.

作者信息

Wen R, Lui G M, Steinberg R H

机构信息

Department of Physiology, University of California, San Francisco 94143.

出版信息

J Physiol. 1993 Jun;465:121-47. doi: 10.1113/jphysiol.1993.sp019669.

Abstract
  1. Whole-cell potassium currents of freshly isolated human (adult and fetal) and monkey (adult) retinal pigment epithelial (RPE) cells, as well as cultured human and monkey RPE cells were studied using the patch-clamp technique. 2. In freshly isolated adult cells of both species, two currents were observed in the voltage range from -150 to +50 mV: an outwardly rectifying current and an inwardly rectifying current. These currents were also found in cultured cells of both species. 3. The outwardly rectifying current in freshly isolated adult human and monkey cells and some cultured cells was evoked by depolarizing voltage pulses more positive that -30 mV. The current activated with a sigmoidal time course after a brief delay, and was virtually non-inactivating. The conductance associated with the current was half-maximal at -16.4 mV for fresh human cells and -13.5 mV for fresh monkey cells, but was shifted 16.0 and 17.7 mV in the positive direction in cultured human and monkey cells, respectively. The reversal potential of the current in both human and monkey cells matched the potassium equilibrium potential (EK) over a wide range of external potassium concentrations. This current was blocked by 20 mM tetraethylammonium. 4. A membrane current that exhibited inward rectification was observed with hyperpolarizing voltage pulses. The zero-current potential of this current was close to EK. This current was blocked by 2 mM Ba2+ and 2 mM Cs+. In cultured human and monkey cells, but not in fresh cells, this current exhibited an inactivation when voltage pulses were more negative than -120 mV. External Na+ was responsible for the inactivation, as the inactivation was removed in a Na(+)-free solution. 5. Membrane currents in freshly isolated fetal human RPE cells were remarkably different from those in adult cells. A transient outward current resembling the A-type potassium current was observed as the dominant membrane current in freshly isolated fetal human cells. This current activated when voltage pulses were more positive than -30 mV. It inactivated rapidly after reaching a maximal level. Application of 5 mM 4-aminopyridine (4-AP) completely blocked this current. Although this current was never observed in fresh adult cells, it was found in 33% of the cultured adult cells with similar kinetics, ion selectivity, and pharmacological properties. 6. In about 26% of the freshly isolated fetal human cells, a more slowly activating outward current, which resembled the delayed rectifier, was found to co-exist with the transient outward current.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用膜片钳技术研究了新鲜分离的人(成人和胎儿)及猴(成人)视网膜色素上皮(RPE)细胞的全细胞钾电流,以及培养的人及猴RPE细胞的全细胞钾电流。2. 在两个物种的新鲜分离的成人细胞中,在-150至+50 mV的电压范围内观察到两种电流:外向整流电流和内向整流电流。在两个物种的培养细胞中也发现了这些电流。3. 新鲜分离的成人人类和猴细胞以及一些培养细胞中的外向整流电流由去极化电压脉冲诱发,该脉冲比-30 mV更正。电流在短暂延迟后以S形时间进程激活,并且几乎不发生失活。新鲜人类细胞中与该电流相关的电导在-16.4 mV时达到最大值的一半,新鲜猴细胞在-13.5 mV时达到最大值的一半,但在培养的人类和猴细胞中分别向正方向偏移了16.0和17.7 mV。在广泛的外部钾浓度范围内,人类和猴细胞中该电流的反转电位与钾平衡电位(EK)匹配。该电流被20 mM四乙铵阻断。4. 用超极化电压脉冲观察到一种表现出内向整流的膜电流。该电流的零电流电位接近EK。该电流被2 mM Ba2+和2 mM Cs+阻断。在培养的人类和猴细胞中,但在新鲜细胞中未观察到,当电压脉冲比-120 mV更负时,该电流表现出失活。外部Na+导致失活,因为在无Na+溶液中失活被消除。5. 新鲜分离的胎儿人类RPE细胞中的膜电流与成人细胞中的膜电流明显不同。在新鲜分离的胎儿人类细胞中观察到一种类似于A 型钾电流的瞬时外向电流作为主要膜电流。当电压脉冲比-30 mV更正时,该电流激活。达到最大水平后迅速失活。应用5 mM 4-氨基吡啶(4-AP)完全阻断了该电流。虽然在新鲜成人细胞中从未观察到这种电流,但在33%的培养成人细胞中发现了具有相似动力学、离子选择性和药理学特性的该电流。6. 在约26%的新鲜分离的胎儿人类细胞中,发现一种激活较慢的外向电流与瞬时外向电流共存,该电流类似于延迟整流器。(摘要截于400字)
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c453/1175422/a2c15a2b55b5/jphysiol00417-0133-a.jpg

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