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抑制晚期钠电流通过减少 CaMK-II 磷酸化和钠通道表达来抑制与钙相关的室性心律失常。

Inhibition of late sodium current suppresses calcium-related ventricular arrhythmias by reducing the phosphorylation of CaMK-II and sodium channel expressions.

机构信息

Department of Cardiology, Peking University First Hospital, Beijing, 100034, China.

Key Laboratory of Molecular Cardiovascular Sciences, Ministry of Education, Beijing, 100191, China.

出版信息

Sci Rep. 2017 Apr 20;7(1):981. doi: 10.1038/s41598-017-01056-0.

Abstract

Cardiac arrhythmias associated with intracellular calcium inhomeostasis are refractory to antiarrhythmic therapy. We hypothesized that late sodium current (I ) contributed to the calcium-related arrhythmias. Monophasic action potential duration at 90% completion of repolarization (MAPD) was significantly increased and ventricular arrhythmias were observed in hearts with increased intracellular calcium concentration ([Ca]) by using Bay K 8644, and the increase became greater in hearts treated with a combination of ATX-II and Bay K 8644 compared to Bay K 8644 alone. The prolongations caused by Bay K 8644 and frequent episodes of ventricular tachycardias, both in absence and presence of ATX-II, were significantly attenuated or abolished by late I inhibitors TTX and eleclazine. In rabbit ventricular myocytes, Bay K 8644 increased I density, calcium transient and myocyte contraction. TTX and eleclazine decreased the amplitude of late I , the reverse use dependence of MAPD at slower heart rate, and attenuated the increase of intracellular calcium transient and myocyte contraction. TTX diminished the phosphorylation of CaMKII-δ and Na 1.5 in hearts treated with Bay K 8644 and ATX-II. In conclusion, late I contributes to ventricular arrhythmias and its inhibition is plausible to treat arrhythmias in hearts with increased [Ca].

摘要

与细胞内钙稳态相关的心律失常对抗心律失常治疗有抗性。我们假设晚期钠电流(I )有助于与钙相关的心律失常。在用 Bay K 8644 增加细胞内钙浓度([Ca])时,单相动作电位复极 90%时的持续时间(MAPD)显著增加,并观察到室性心律失常,与单独使用 Bay K 8644 相比,在用 ATX-II 和 Bay K 8644 联合处理的心脏中,增加更为明显。Bay K 8644 引起的延长以及在没有和存在 ATX-II 的情况下频繁发生的室性心动过速,均被晚期 I 抑制剂 TTX 和 eleclazine 显著减轻或消除。在兔心室肌细胞中,Bay K 8644 增加了 I 密度、钙瞬变和心肌收缩。TTX 和 eleclazine 降低了晚期 I 的幅度、在较慢心率下 MAPD 的反向使用依赖性,并减轻了细胞内钙瞬变和心肌收缩的增加。TTX 减少了在 Bay K 8644 和 ATX-II 处理的心脏中 CaMKII-δ 和 Na 1.5 的磷酸化。总之,晚期 I 有助于室性心律失常,其抑制可能有助于治疗 [Ca]增加的心脏中的心律失常。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4459/5430524/4ff2df4c6f85/41598_2017_1056_Fig1_HTML.jpg

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