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钠诱导的钙离子通过小鼠心室心肌细胞中钠钙交换体的反向模式内流。

Na+-induced Ca2+ influx through reverse mode of Na+-Ca2+ exchanger in mouse ventricular cardiomyocyte.

作者信息

Yan Zhen-Yu, Ban Tao, Fan Yao, Chen Wei-Ran, Sun Hong-Li, Chen Hanying, Qiao Quo-Fen, Li Bai-Yan

机构信息

Department of Pharmacology, Harbin Medical University, Harbin, China.

Riley Heart Research Center, Division of Pediatric Cardiology, Herman B. Wells Center for Pediatric Research, Department of Pediatrics, Indiana University School of Medicine, Indianapolis, USA.

出版信息

Oncotarget. 2015 Sep 15;6(27):23272-80. doi: 10.18632/oncotarget.4878.

Abstract

BACKGROUND

Dobutamine is commonly used for clinical management of heart failure and its pharmacological effects have long been investigated as inotropics via β-receptor activation. However, there is no electrophysiological evidence if dobutamine contributes inotropic action due at least partially to the reverse mode of Na+-Ca2+ exchanger (NCX) activation.

METHODS

Action potential (AP), voltage-gated Na+ (INa), Ca2+ (ICa), and K+ (Ito and IK1) currents were observed using whole-cell patch technique before and after dobutamine in ventricular cardiomyocytes isolated from adult mouse hearts. Another sets of observation were also performed with Kb-r7943 or in the solution without [Ca2+]o.

RESULTS

Dobutamine (0.1-1.0 μM) significantly enhanced the AP depolarization with prolongation of AP duration (APD) in a concentration-dependent fashion. The density of INa was also increased concentration-dependently without alternation of voltage-dependent steady-status of activation and inactivation, reactivation as well. Whereas, the activities for ICa, Ito, and IK1 were not changed by dobutamine. Intriguingly, the dobutamine-mediated changes in AP repolarization were abolished by 3 μM Kb-r7943 pretreatment or by simply removing [Ca2+]o without affecting accelerated depolarization. Additionally, the ratio of APD50/APD90 was not significantly altered in the presence of dobutamine, implying that effective refractory period was remain unchanged.

CONCLUSIONS

This novel finding provides evidence that dobutamine upregulates of voltage-gated Na+ channel function and Na+ influx-induced activation of the reverse mode of NCX, suggesting that dobutamine may not only accelerate ventricular contraction via fast depolarization but also cause Ca2+ influx, which contributes its positive inotropic effect synergistically with β-receptor activation without increasing the arrhythmogenetic risk.

摘要

背景

多巴酚丁胺常用于心力衰竭的临床治疗,其药理作用长期以来一直作为通过β受体激活的正性肌力药物进行研究。然而,尚无电生理学证据表明多巴酚丁胺的正性肌力作用是否至少部分归因于钠钙交换体(NCX)激活的反向模式。

方法

使用全细胞膜片钳技术观察成年小鼠心脏分离的心室肌细胞在多巴酚丁胺处理前后的动作电位(AP)、电压门控钠电流(INa)、钙电流(ICa)和钾电流(Ito和IK1)。还使用Kb-r7943或在无细胞外钙([Ca2+]o)的溶液中进行了另一组观察。

结果

多巴酚丁胺(0.1 - 1.0 μM)以浓度依赖的方式显著增强AP去极化并延长动作电位时程(APD)。INa密度也呈浓度依赖性增加,而电压依赖性激活、失活和再激活的稳态无改变。然而,多巴酚丁胺对ICa、Ito和IK1的活性无影响。有趣的是,3 μM Kb-r7943预处理或简单去除[Ca2+]o可消除多巴酚丁胺介导的AP复极化变化,而不影响加速去极化。此外,在多巴酚丁胺存在下,APD50/APD90的比值无显著改变,这意味着有效不应期保持不变。

结论

这一新颖发现提供了证据,表明多巴酚丁胺上调电压门控钠通道功能以及钠内流诱导的NCX反向模式激活,提示多巴酚丁胺不仅可通过快速去极化加速心室收缩,还可导致钙内流,这与β受体激活协同发挥其正性肌力作用,而不增加致心律失常风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/605b/4695117/56c805912fa0/oncotarget-06-23272-g001.jpg

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