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大鼠膀胱平滑肌细胞内向整流电流的药理学特性

Pharmacological characterization of the inwardly-rectifying current in the smooth muscle cells of the rat bladder.

作者信息

Green M E, Edwards G, Kirkup A J, Miller M, Weston A H

机构信息

School of Biological Sciences, University of Manchester.

出版信息

Br J Pharmacol. 1996 Dec;119(8):1509-18. doi: 10.1111/j.1476-5381.1996.tb16066.x.

Abstract
  1. In freshly-isolated single cells of the rat bladder detrusor, outwardly-rectifying and inwardly-rectifying membrane currents were identified by the whole-cell voltage-clamp technique. 2. The inwardly-rectifying current (IIR) exhibited features of a cation current permeable to both K+ and Na+ but it was unaffected by changes in extracellular Ca2+. It had an activation threshold close to -60 mV and an estimated reversal potential of -29 mV. 3. IIR activated slowly with a voltage-sensitive time-constant of 69 ms at -140 mV and 209 ms at -100 mV but did not exhibit time-dependent inactivation. 4. IIR was unaffected by tetraethylammonium (up to 20 mM) but it was reduced by extracellular Ba2+ (1 mM) and by extracellular Cs+ (1 mM). 5. IIR was reduced by terikalant (100 microM) and markedly inhibited by ciclazindol (100 microM) although at these concentrations, both agents also reduced outward currents. 6. IIR was inhibited by ZD7288 (10-100 microM) in a concentration-dependent manner. At concentrations up to 30 microM, ZD7288 did not reduce the magnitude of outward currents but these were inhibited by 100 microM ZD7288. 7. In strips of bladder detrusor, spontaneous mechanical activity was increased by ZD7288 (0.3-100 microM) and by ciclazindol (0.3-100 microM) but was unaffected by glibenclamide (1-10 microM). 8. It is concluded that IIR closely resembles the hyperpolarization-activated current Ih, previously described in the smooth muscle of rabbit jejunum and in a variety of other cell types. This current may play an important role in modulating detrusor excitability but this could not be confirmed using the inhibitors ZD7288 and ciclazindol.
摘要
  1. 在大鼠膀胱逼尿肌的新鲜分离单细胞中,通过全细胞电压钳技术鉴定出外向整流和内向整流膜电流。2. 内向整流电流(IIR)表现出对K⁺和Na⁺均通透的阳离子电流特征,但不受细胞外Ca²⁺变化的影响。其激活阈值接近 -60 mV,估计反转电位为 -29 mV。3. IIR激活缓慢,在 -140 mV时电压敏感时间常数为69 ms,在 -100 mV时为209 ms,但不表现出时间依赖性失活。4. IIR不受四乙铵(高达20 mM)的影响,但细胞外Ba²⁺(1 mM)和细胞外Cs⁺(1 mM)可使其降低。5. 特立卡兰(100 microM)可使IIR降低,西氯嗪多(100 microM)可显著抑制IIR,尽管在这些浓度下,两种药物也会降低外向电流。6. ZD7288(10 - 100 microM)以浓度依赖性方式抑制IIR。在高达30 microM的浓度下,ZD7288不会降低外向电流的幅度,但100 microM的ZD7288会抑制外向电流。7. 在膀胱逼尿肌条中,ZD7288(0.3 - 100 microM)和西氯嗪多(0.3 - 100 microM)可增加自发机械活动,但格列本脲(1 - 10 microM)对其无影响。8. 得出结论,IIR与先前在兔空肠平滑肌和多种其他细胞类型中描述的超极化激活电流Ih非常相似。该电流可能在调节逼尿肌兴奋性中起重要作用,但使用抑制剂ZD7288和西氯嗪多无法证实这一点。

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