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从人窦房结分离的单细胞:动作电位与起搏电流的数值重建

Single cells isolated from human sinoatrial node: action potentials and numerical reconstruction of pacemaker current.

作者信息

Verkerk Arie O, van Borren Marcel M G J, Peters Ron J G, Broekhuis Eli, Lam Kayan Y, Coronel Ruben, de Bakker Jacques M T, Tan Hanno L, Wilders Ronald

机构信息

Department of Physiology, Academic Medical Center, University of Amsterdam, Amsterdam, Netherlands.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2007;2007:904-7. doi: 10.1109/IEMBS.2007.4352437.

Abstract

Pacemaker activity of the sinoatrial node has extensively been studied in laboratory animals of various species, but is virtually unexplored in man. Most experimental data have been obtained from rabbit, where the hyperpolarization-activated 'funny' current (If), also known as the 'pacemaker current', plays an important role in diastolic depolarization and thus in setting pacing rate. Recently, we isolated pacemaker cells from excised human sinoatrial node tissue, and recorded action potentials and If using the whole-cell patch-clamp technique in current clamp and voltage clamp mode, respectively. Single sinoatrial node pacemaker cells showed a spontaneous beating rate of 73 +/- 3 beats/min (mean +/- SEM, n = 3) with a remarkably slow diastolic depolarization. If was identified in voltage clamp experiments as the 2 mmol/L Cs+-sensitive inward current activating upon 2-s hyperpolarizing voltage clamp steps. The If reversal potential and (de)activation kinetics were similar to those in rabbit. However, the fully-activated If conductance was 3-4 times smaller than typically found in rabbit. Furthermore, the half-maximal activation voltage was approximately 20 mV more negative than in rabbit. These differences would both act to reduce the functional role of If in human pacemaker cells. To assess this functional role, we carried out a numerical reconstruction of the If time course during an experimentally recorded human sinoatrial node action potential, based on the obtained data on If amplitude and kinetics. This reconstruction revealed that If provides a small but significant inward current in the voltage range of diastolic depolarization. We conclude that human sinoatrial node pacemaker cells functionally express If and that this If contributes to pacemaking in human sinoatrial node.

摘要

窦房结的起搏活动在各种实验动物中已得到广泛研究,但在人体中几乎未被探索。大多数实验数据来自兔子,其中超极化激活的“ funny”电流(If),也称为“起搏电流”,在舒张期去极化中起重要作用,从而设定起搏速率。最近,我们从切除的人窦房结组织中分离出起搏细胞,并分别使用全细胞膜片钳技术在电流钳和电压钳模式下记录动作电位和If。单个窦房结起搏细胞的自发搏动率为73±3次/分钟(平均值±标准误,n = 3),舒张期去极化非常缓慢。在电压钳实验中,If被确定为在2秒超极化电压钳步阶时激活的2 mmol/L Cs +敏感内向电流。If的反转电位和(去)激活动力学与兔子相似。然而,如果完全激活的电导比兔子中通常发现的小3-4倍。此外,半最大激活电压比兔子中的负约20 mV。这些差异都将降低If在人起搏细胞中的功能作用。为了评估这种功能作用,我们根据获得的If幅度和动力学数据,对实验记录的人窦房结动作电位期间的If时间过程进行了数值重建。该重建显示If在舒张期去极化的电压范围内提供了一个小但重要的内向电流。我们得出结论,人窦房结起搏细胞在功能上表达If,并且这种If有助于人窦房结的起搏。

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