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刺激诱导豚鼠冠状动脉心肌细胞T型Ca2+通道电流增强

Stimulation-induced potentiation of T-type Ca2+ channel currents in myocytes from guinea-pig coronary artery.

作者信息

Isenberg G

机构信息

Department of Physiology, University of Cologne, Germany.

出版信息

J Physiol. 1991 Nov;443:703-25. doi: 10.1113/jphysiol.1991.sp018859.

Abstract
  1. Whole-cell Ca2+ channel currents were studied in myocytes isolated from guinea-pig circumflex coronary artery at 36 degrees C and with 10 mM-Ba2+ (or Ca2+) as charge carrier. With 180 ms clamp steps from the holding potential of -100 mV, currents at -30 mV were carried mostly through the T-type calcium channels while at positive potentials currents were mostly of the L-type. 2. The increase in frequency of pulsing from 0.1 to 2.5 Hz resulted in a reduction of peak inward current ('negative staircase') with the 180 ms pulses to + 10 mV, but in a 2-fold potentiation ('positive staircase') with pulses to -30 mV. T-type currents and their frequency-mediated potentiation did not change significantly when Ba2+ was substituted by Ca2+ or Sr2+. 3. Potentiation of T-type currents was further analysed with a paired-pulse protocol: at a basal frequency of 0.1 Hz, a pre-pulse (inducing current I1) was followed by a 200 ms repolarization to -100 mV and a test pulse (inducing current I2). The potentiation could only be recorded using test pulses depolarizing the membrane to potentials between -40 and -10 mV; at more positive test potentials it was masked by the depressant effect of pre-pulses on the L-type current. 4. Potentiation of I2 by 200 ms pre-pulses started at pre-pulse potentials more positive than -60 mV and saturated at -20 mV (I2 potentiated by a factor 2.4). Between -20 and +130 mV the potentiation was not dependent on the pre-pulse potential suggesting that the influx of Ba2+ or Ca2+ is not required for this effect. Potentiation of I2 by a 10 s pre-pulse followed the voltage dependence of the steady-state inactivation curve of the T-type Ca2+ channel; potentiation became visible at potentials more positive than -80 mV and saturated at about -50 mV. 5. When changing the interval between two identical 200 ms pulses, the T-type current was found to recover completely from inactivation within 40 ms at -100 mV; at intervals of 160-320 ms maximal potentiation of I2 occurred. 6. With pre-pulses shorter than 200 ms, potentiation became attenuated when inactivation became less complete. When the potential during the interval between the pulses was -80 instead of -100 mV, maximal potentiation was reduced (I2 potentiated by a factor of 1.3 instead of 2.2) and occurred later (1.28 s). 7. Potentiated T-type currents inactivated faster.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在36℃下,以10 mM - Ba²⁺(或Ca²⁺)作为电荷载体,研究了从豚鼠冠状动脉左旋支分离的心肌细胞中的全细胞Ca²⁺通道电流。从 - 100 mV的 holding 电位进行180 ms的钳制步骤, - 30 mV时的电流主要通过T型钙通道传导,而在正电位时电流主要为L型。2. 脉冲频率从0.1 Hz增加到2.5 Hz,导致180 ms脉冲至 + 10 mV时内向电流峰值降低(“负阶梯”),但脉冲至 - 30 mV时增强了2倍(“正阶梯”)。当Ba²⁺被Ca²⁺或Sr²⁺替代时,T型电流及其频率介导的增强作用没有显著变化。3. 用双脉冲方案进一步分析T型电流的增强作用:在0.1 Hz的基础频率下,一个预脉冲(诱导电流I1)之后是200 ms复极化至 - 100 mV,然后是一个测试脉冲(诱导电流I2)。增强作用仅在使用将膜去极化至 - 40至 - 10 mV之间电位的测试脉冲时才能记录到;在更正的测试电位时,它被预脉冲对L型电流的抑制作用所掩盖。4. 200 ms预脉冲对I2的增强作用在预脉冲电位比 - 60 mV更正时开始,并在 - 20 mV时达到饱和(I2增强2.4倍)。在 - 20至 + 130 mV之间,增强作用不依赖于预脉冲电位,表明这种效应不需要Ba²⁺或Ca²⁺的流入。10 s预脉冲对I2的增强作用遵循T型Ca²⁺通道稳态失活曲线的电压依赖性;增强作用在电位比 - 80 mV更正时可见,并在约 - 50 mV时达到饱和。5. 当改变两个相同的200 ms脉冲之间的间隔时,发现T型电流在 - 100 mV时在40 ms内从失活中完全恢复;在160 - 320 ms的间隔时,I2出现最大增强。6. 当预脉冲短于200 ms时,随着失活变得不那么完全,增强作用减弱。当脉冲之间间隔期间的电位为 - 80 mV而不是 - 100 mV时,最大增强作用降低(I2增强1.3倍而不是2.2倍)并且出现得更晚(1.28 s)。7. 增强的T型电流失活更快。(摘要截断于400字)

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Effect of ACh on electrical and mechanical activity in guinea pig coronary arteries.
Am J Physiol. 1989 Oct;257(4 Pt 2):H1096-103. doi: 10.1152/ajpheart.1989.257.4.H1096.
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