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与海象心房纤维中钙释放及张力发展相关的瞬时外向电流。

A transient outward current related to calcium release and development of tension in elephant seal atrial fibres.

作者信息

Maylie J, Morad M

出版信息

J Physiol. 1984 Dec;357:267-92. doi: 10.1113/jphysiol.1984.sp015500.

Abstract

Membrane currents and development of tension in atrial trabeculae from elephant seal hearts were studied using a single sucrose-gap voltage-clamp technique. A transient outward current (Ito) was observed with kinetics, voltage and beat dependence, similar to those of tension. Ito had a bell-shaped voltage dependence similar to that of tension and the slow inward current (Isi). Ito, unlike Isi, showed beat dependence quite similar to developed tension. Increases in [Ca]o, frequency of stimulation, and addition of adrenaline enhanced Ito and developed tension. Ito was suppressed by addition of Mn2+, tetracaine, or by depolarizing pre-pulses (to -40 mV for 250 ms). Caffeine at low concentrations (1 mM) blocked beat dependence of Ito. At higher concentrations (greater than 5 mM) caffeine suppressed the activation of Ito, phasic tension, and the second component of the birefringence signal (related to Ca2+-releasing activity of the sarcoplasmic reticulum (s.r.]. Similar to Isi phasic tension and Ito, the voltage dependence of the second component of the birefringence signal was bell-shaped. Our studies suggest that activation of Ito is related to triggered release of Ca2+ from the s.r. which generates the phasic tension. An excitation-contraction coupling scheme is presented which incorporates these findings and suggests that Ito may be responsible for shorter action potentials found in atrial fibres.

摘要

采用单蔗糖间隙电压钳技术研究了海象心脏心房小梁的膜电流和张力发展。观察到一种瞬时外向电流(Ito),其动力学、电压和搏动依赖性与张力相似。Ito具有与张力和缓慢内向电流(Isi)相似的钟形电压依赖性。与Isi不同,Ito表现出与发展张力非常相似的搏动依赖性。细胞外钙浓度升高、刺激频率增加以及肾上腺素的添加增强了Ito和发展张力。添加锰离子、丁卡因或通过去极化预脉冲(至-40mV,持续250ms)可抑制Ito。低浓度(1mM)的咖啡因阻断了Ito的搏动依赖性。在较高浓度(大于5mM)时,咖啡因抑制Ito的激活、相位张力以及双折射信号的第二成分(与肌浆网(s.r.)的钙释放活性相关)。与Isi相位张力和Ito相似,双折射信号第二成分的电压依赖性也是钟形的。我们的研究表明,Ito的激活与肌浆网中钙的触发释放有关,后者产生相位张力。本文提出了一种兴奋-收缩偶联方案,该方案纳入了这些发现,并表明Ito可能是心房纤维中较短动作电位的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/236d/1193258/9a9b4d14f545/jphysiol00583-0304-a.jpg

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