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兔空肠新鲜分离的单个平滑肌细胞中的内向整流

Inward rectification in freshly isolated single smooth muscle cells of the rabbit jejunum.

作者信息

Benham C D, Bolton T B, Denbigh J S, Lang R J

机构信息

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

出版信息

J Physiol. 1987 Feb;383:461-76. doi: 10.1113/jphysiol.1987.sp016421.

Abstract
  1. Single smooth muscle cells were obtained by collagenase digestion of longitudinal muscle of rabbit jejunum. Membrane potential or current under voltage clamp was recorded by patch-clamp technique in the whole-cell recording mode at 22-25 degrees C. 2. At a membrane potential of -50 mV small hyperpolarizing current pulses produced electrotonic potentials which asymptotically approached a steady-state size and did not 'sag'. Stronger hyperpolarization resulted in a 'sag' of the electrotonic potential. Under voltage clamp an inward current, i, was activated in the range -60 to -110 mV. 3. This current had an equilibrium potential of -24.5 +/- 3.5 mV which was shifted negatively by reducing the sodium concentration, and positively by raising the potassium concentration of the bathing solution. 4. This current was blocked by caesium (1 mM) but less affected by barium ions up to 10 mM. 5. The time course of i upon stepping into its activation range was accelerated by increasing negativity and following an initial short delay could be described by a single exponential with a time constant in the range 60 s(-60 mV) to 1 s(-130 mV). 6. It is concluded that these jejunal cells possess a current to which sodium and potassium ions make a contribution which is responsible for the inward rectification they show upon hyperpolarization. This current is activated in a range which would allow it to contribute to the slow potential changes shown by longitudinal jejunal muscle.
摘要
  1. 通过胶原酶消化兔空肠纵肌获得单个平滑肌细胞。在22 - 25摄氏度下,采用膜片钳技术的全细胞记录模式记录膜电位或电压钳下的电流。2. 在膜电位为 -50 mV时,小的超极化电流脉冲产生电紧张电位,该电位渐近地接近稳态大小且不“下垂”。更强的超极化导致电紧张电位“下垂”。在电压钳下,在 -60至 -110 mV范围内激活内向电流i。3. 该电流的平衡电位为 -24.5±3.5 mV,通过降低钠浓度使其向负向移动,通过提高浴液中钾浓度使其向正向移动。4. 该电流被铯(1 mM)阻断,但在高达10 mM的钡离子作用下影响较小。5. 进入其激活范围时i的时间进程通过增加负性而加速,在初始短暂延迟后可以用单个指数描述,时间常数范围为60 s(-60 mV)至1 s(-130 mV)。6. 得出结论,这些空肠细胞具有一种电流,钠和钾离子对该电流有贡献,这是它们在超极化时表现出内向整流的原因。该电流在一个范围内被激活,这使其能够对空肠纵肌显示的慢电位变化做出贡献。

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