Thuringer D, Lauribe P, Escande D
Laboratoire de Physiologie Cellulaire, URA CNRS 1121, Université de Paris XI, Orsay, France.
J Mol Cell Cardiol. 1992 May;24(5):451-5. doi: 10.1016/0022-2828(92)91833-q.
Normally-polarized tissue from the human atrial myocardium usually exhibits a diastolic depolarization phase which can be suppressed reversibly by Cs+ or enhanced by inhibiting the inward rectifier K+ current, iK1, with Ba2+. (Escande et al., 1986). Because the suppression of the diastolic slope by Cs+ leads to a hyperpolarization of the cell membrane at the end of the diastolic phase, it was suggested that Cs+ might inhibit an inward current responsible for diastolic depolarization. Among the ionic mechanisms underlying the diastolic depolarization phase of cardiac tissues, the hyperpolarization-activated inward current, if, fits well to explain the small diastolic slope of human atrial fibres. In other preparations, this inward current carried both by Na+ and K+ ions is rapidly deactivated during the action potential and entirely blocked by millimolar concentrations of Cs+ (DiFrancesco 1981; DiFrancesco, et al., 1986; Kokubun et al., 1982; Callewaert et al., 1984; Denyer and Brown, 1990). Such a current in human myocardial cells has not been characterized so far although its existence in human atrial trabeculae was previously reported in an abstract (Carmeliet, 1984). In the present study, we describe an inward current which activates upon hyperpolarization in patch-clamped single human atrial cells and shares similar characteristics with the if pacemaker current described in unicellular and intact preparations of mammalian cardiac tissues.
来自人心房肌的正常极化组织通常表现出舒张期去极化阶段,该阶段可被Cs +可逆性抑制,或通过用Ba2 +抑制内向整流钾电流iK1而增强。(埃斯坎德等人,1986年)。由于Cs +对舒张期斜率的抑制导致舒张期末细胞膜超极化,因此有人提出Cs +可能抑制负责舒张期去极化的内向电流。在心脏组织舒张期去极化阶段的离子机制中,超极化激活的内向电流if非常适合解释人心房纤维较小的舒张期斜率。在其他制剂中,这种由Na +和K +离子携带的内向电流在动作电位期间迅速失活,并被毫摩尔浓度的Cs +完全阻断(迪弗朗西斯科,1981年;迪弗朗西斯科等人,1986年;小久保等人,1982年;卡勒韦尔特等人,1984年;登耶尔和布朗,1990年)。尽管之前在一篇摘要中报道过人房小梁中存在这种电流(卡梅利埃,1984年),但迄今为止,人心肌细胞中的这种电流尚未得到表征。在本研究中,我们描述了一种内向电流,它在膜片钳单个人心房细胞超极化时激活,并与在哺乳动物心脏组织的单细胞和完整制剂中描述的if起搏电流具有相似的特征。