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与从豚鼠分离的心肌细胞强直性收缩相关的锶诱导的蠕动电流。

Strontium-induced creep currents associated with tonic contractions in cardiac myocytes isolated from guinea-pigs.

作者信息

Niggli E

机构信息

Department of Physiology, University of Bern, Switzerland.

出版信息

J Physiol. 1989 Jul;414:549-68. doi: 10.1113/jphysiol.1989.sp017703.

Abstract
  1. Strontium can replace calcium in a number of physiological and biochemical processes. The effects of Sr2+ were investigated in enzymatically isolated ventricular myocytes of the guinea-pig. Action potentials and membrane currents were measured with the patch-clamp technique used in the whole-cell recording configuration. Mechanical activity was assessed utilizing a laser-light diffraction system for sarcomere length measurements in single heart cells. 2. When experiments where carried out using 2 mM-Sr2+ to replace 2 mM-Ca2+ action potentials were found to be prolonged up to severalfold. Voltage-clamp experiments revealed that the slow inward current (Isi) inactivated more slowly. With Ca2+ replaced by Sr2+, the onset of the twitch was delayed, the maximum shortening was increased and a marked voltage-dependent tonic shortening developed. 3. Voltage-clamp pulses of 3.3 s duration were applied to investigate changes of the steady-state current-voltage relationship produced by replacing Ca2+ with Sr2+. Large slow changes of membrane currents produced by Sr2+ were observed. The identity and time course of these currents were investigated after blocking Isi and potassium currents pharmacologically. The remaining current had many of the characteristics of 'creep currents' (Eisner & Lederer, 1979; Hume & Uehara, 1986 a, b). The creep currents were found to be paralleled by changes of the intracellular Sr2+ concentration, as determined by tracking the sarcomere length during the accompanying tonic contractions. 4. The creep currents were suppressed by Ni2+ (2 mM), a finding that suggests that the Na+-Ca2+ exchanger may be responsible for producing these currents (Kimura, Miyamae & Noma, 1987). The question remains, however, whether the Na+-Ca2+ exchanger is responsible for generating the currents itself or whether it may influence another current source by changing the intracellular Sr2+ concentration. 5. To test the role of the Na+-Ca2+ exchanger in producing the creep currents, the reversal potential of the creep current was investigated. Simple voltage protocols were inadequate to distinguish between the two current sources. However, loading the cytosol with Sr2+ by means of a second pipette sealed to the same cell in the presence of Ni2+ as an inhibitor of the Na+-Ca2+ exchanger revealed difference currents compatible with a non-specific cationic channel activated by intracellular Sr2+ (Ehara, Noma & Ono, 1988). 6. In conclusion, the creep currents produced when Ca2+ is replaced by Sr2+ appear to arise from an increase of intracellular Sr2+ which activates a non-specific cation channel. A contribution from the Na+-Ca2+ exchanger can not be excluded.
摘要
  1. 锶可在许多生理和生化过程中取代钙。在豚鼠酶分离心室肌细胞中研究了Sr2+的作用。采用全细胞记录模式的膜片钳技术测量动作电位和膜电流。利用激光衍射系统评估单个心肌细胞中肌节长度的机械活动。2. 当使用2 mM - Sr2+替代2 mM - Ca2+进行实验时,发现动作电位延长了数倍。电压钳实验表明,缓慢内向电流(Isi)失活更慢。用Sr2+替代Ca2+后,收缩期开始延迟,最大缩短增加,并且出现明显的电压依赖性强直缩短。3. 施加持续3.3 s的电压钳脉冲,以研究用Sr2+替代Ca2+产生的稳态电流 - 电压关系的变化。观察到Sr2+引起的膜电流有大的缓慢变化。在用药物阻断Isi和钾电流后,研究了这些电流的特性和时间进程。剩余电流具有许多“蠕动电流”的特征(艾斯纳和莱德勒,1979;休姆和上原,1986a,b)。通过在伴随的强直收缩期间跟踪肌节长度确定,发现蠕动电流与细胞内Sr2+浓度的变化平行。4. 蠕动电流被2 mM的Ni2+抑制,这一发现表明Na+-Ca2+交换器可能是产生这些电流的原因(木村、宫前和野间,1987)。然而,问题仍然存在,即Na+-Ca2+交换器是负责自身产生电流,还是通过改变细胞内Sr2+浓度影响另一个电流源。5. 为了测试Na+-Ca2+交换器在产生蠕动电流中的作用,研究了蠕动电流的反转电位。简单的电压方案不足以区分这两个电流源。然而,在作为Na+-Ca2+交换器抑制剂的Ni2+存在下,通过第二个微电极向同一细胞的胞质溶胶中加载Sr2+,揭示了与细胞内Sr2+激活的非特异性阳离子通道兼容的差异电流(江原、野间和小野,1988)。6. 总之,当Ca2+被Sr2+替代时产生的蠕动电流似乎源于细胞内Sr2+的增加,后者激活了一个非特异性阳离子通道。不能排除Na+-Ca2+交换器的作用。

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