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兔门静脉平滑肌细胞中自发性钙激活氯电流的时间进程。

Time course of spontaneous calcium-activated chloride currents in smooth muscle cells from the rabbit portal vein.

作者信息

Hogg R C, Wang Q, Large W A

机构信息

Department of Pharmacology and Clinical Pharmacology, St George's Hospital Medical School, London.

出版信息

J Physiol. 1993 May;464:15-31. doi: 10.1113/jphysiol.1993.sp019622.

Abstract
  1. The time course of spontaneous calcium-activated chloride currents was studied with the perforated patch technique in freshly dispersed smooth muscle cells from the rabbit portal vein. 2. In potassium-containing solutions the spontaneous transient outward current (STOC, a calcium-activated potassium current) was more commonly recorded than spontaneous transient inward currents (STICs, a calcium-activated chloride current). In addition the duration of STOCs was much briefer (about 100 ms) than the duration of STICs (about 400 ms). 3. The decay of STICs could be described by a single exponential but the STOC decay appeared to be more complex. The decay time constant of STICs was not determined significantly by amplitude. 4. The time constant of decay of STICs (tau) was 86 ms at -50 mV and was increased by depolarization. Between -90 and +50 mV the relationship between tau and membrane potential was exponential and tau changed e-fold for a change of membrane potential of 120 mV. 5. The I-V relationship of STIC amplitude was linear between -10 and +50 mV but at more negative potentials the chord conductance was reduced and the I-V relationship exhibited negative slope conductance between -50 and -90 mV. 6. There was good agreement between the STIC tau values and the exponential relaxations to voltage steps evoked during caffeine-induced calcium-activated chloride currents. 7. In the presence of the chloride channel blocking agent anthracene-9-carboxylic acid the STIC amplitude was reduced and tau was increased. This effect was voltage dependent with a much greater effect at positive potentials. 8. The evidence suggests that the decay of STICs represents closure of chloride channels and tau approximates to the channel mean open time.
摘要
  1. 采用穿孔膜片钳技术研究了兔门静脉新鲜分离的平滑肌细胞中自发性钙激活氯电流的时间进程。2. 在含钾溶液中,自发性瞬时外向电流(STOC,一种钙激活钾电流)比自发性瞬时内向电流(STICs,一种钙激活氯电流)更常被记录到。此外,STOCs的持续时间(约100毫秒)比STICs的持续时间(约400毫秒)短得多。3. STICs的衰减可用单指数描述,但STOC的衰减似乎更复杂。STICs的衰减时间常数不受幅度的显著影响。4. STICs的衰减时间常数(tau)在-50 mV时为86毫秒,并随去极化而增加。在-90至+50 mV之间,tau与膜电位的关系呈指数关系,膜电位变化120 mV时,tau变化一个e倍。5. STIC幅度的I-V关系在-10至+50 mV之间呈线性,但在更负的电位下,弦电导降低,I-V关系在-50至-�0 mV之间呈现负斜率电导。6. STIC的tau值与咖啡因诱导的钙激活氯电流期间电压阶跃的指数松弛之间有很好的一致性。7. 在存在氯通道阻断剂蒽-9-羧酸的情况下,STIC幅度降低,tau增加。这种效应是电压依赖性的,在正电位时影响更大。8. 证据表明,STICs的衰减代表氯通道的关闭,tau近似于通道的平均开放时间。

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