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心脏缝隙连接的药理学调节以增强心脏传导:支持抗心律失常治疗新靶点的证据

Pharmacological modulation of cardiac gap junctions to enhance cardiac conduction: evidence supporting a novel target for antiarrhythmic therapy.

作者信息

Eloff Benjamin C, Gilat Eran, Wan Xiaoping, Rosenbaum David S

机构信息

The Heart and Vascular Research Center and the Department of Biomedical Engineering, MetroHealth Campus, Case Western Reserve University, Cleveland, Ohio 44109-1998, USA.

出版信息

Circulation. 2003 Dec 23;108(25):3157-63. doi: 10.1161/01.CIR.0000101926.43759.10. Epub 2003 Dec 1.

Abstract

BACKGROUND

Disease-induced alterations of cardiac gap junctions lead to intercellular uncoupling, which is an important mechanism of arrhythmogenesis. Therefore, drugs that selectively open gap junctions potentially offer a novel strategy for antiarrhythmic therapy. Because the peptide ZP123 was found to increase conductance between paired myocytes, we hypothesized that ZP123 would suppress acidosis-induced gap junction closure in the intact heart.

METHODS AND RESULTS

High-resolution optical mapping was used to measure conduction velocity (CV) and action potential duration from ventricular epicardium of Langendorff-perfused guinea pig hearts at baseline (pH 7.4) and during 45 minutes of perfusion with acidotic (pH 6.0) Tyrode's solution with (n=8) and without (control, n=7) ZP123 (80 nmol/L). Acidosis produced conduction slowing transverse (29.1+/-0.1 to 16.8+/-0.2 cm/s, P<0.0001) and longitudinal (47.2+/-2.4 to 33.2+/-4.8 cm/s, P<0.0001) to cardiac fibers. Importantly, ZP123 inhibited conduction slowing during acidosis by approximately 60%. The peak effect of ZP123 was achieved after 16 minutes of acidosis, consistent with inhibition of uncoupling. ZP123 did not affect Na+ current in isolated myocytes, additionally affirming that preservation of CV was attributable to the compound's action on gap junctions. ZP123 had no effect on CV in the absence of acidosis, suggesting that drug activity targets gap junctions under metabolic stress. Action potential duration heterogeneity was significantly reduced by ZP123 (6.7+/-0.8 ms) compared with controls (9.7+/-3.1 ms, P<0.05), presumably by enhancing cell-to-cell coupling.

CONCLUSIONS

These data suggest that ZP123 significantly attenuates gap junction closure during acidosis. Preservation of intercellular coupling diminished CV slowing and heterogeneous repolarization, eliminating arrhythmogenic substrates.

摘要

背景

疾病引起的心脏间隙连接改变会导致细胞间解偶联,这是心律失常发生的重要机制。因此,选择性开放间隙连接的药物可能为抗心律失常治疗提供一种新策略。由于发现肽ZP123可增加成对心肌细胞之间的电导,我们推测ZP123会抑制完整心脏中酸中毒诱导的间隙连接关闭。

方法与结果

使用高分辨率光学标测技术,在基线(pH 7.4)以及用酸性(pH 6.0)台氏液灌注45分钟期间,测量Langendorff灌注豚鼠心脏心室心外膜的传导速度(CV)和动作电位持续时间,灌注酸性台氏液时分为添加(n = 8)和不添加(对照,n = 7)ZP123(80 nmol/L)两组。酸中毒导致心脏纤维横向传导减慢(从29.1±0.1 cm/s降至16.8±0.2 cm/s,P<0.0001)和纵向传导减慢(从47.2±2.4 cm/s降至33.2±4.8 cm/s,P<0.0001)。重要的是,ZP123在酸中毒期间抑制传导减慢约60%。ZP123的峰值效应在酸中毒16分钟后出现,这与抑制解偶联一致。ZP123对分离的心肌细胞中的Na+电流无影响,进一步证实CV的保留归因于该化合物对间隙连接的作用。在无酸中毒情况下,ZP123对CV无影响,表明药物活性靶向代谢应激下的间隙连接。与对照组(9.7±3.1 ms,P<0.05)相比,ZP123显著降低了动作电位持续时间的异质性(6.7±0.8 ms),推测是通过增强细胞间偶联实现的。

结论

这些数据表明ZP123在酸中毒期间显著减弱间隙连接关闭。细胞间偶联的保留减少了CV减慢和复极不均一性,消除了致心律失常底物。

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