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Cx43 CT 结构域影响急性心肌梗死后的梗死面积和室性心律失常易感性。

Cx43 CT domain influences infarct size and susceptibility to ventricular tachyarrhythmias in acute myocardial infarction.

机构信息

SUNY Upstate Medical University, Syracuse, NY, USA.

出版信息

Cardiovasc Res. 2009 Dec 1;84(3):361-7. doi: 10.1093/cvr/cvp250. Epub 2009 Jul 20.

Abstract

AIMS

Hearts of mice expressing K258stop in place of connexin43 (Cx43) protein were subjected to acute myocardial infarction in order to assess the importance of Cx43 regulation on infarct size and arrhythmia susceptibility. This mutation K258stop prevents chemical regulation of Cx43 channels, including by low intracellular pH.

METHODS AND RESULTS

Langendorff-perfused hearts of mice harbouring one Cx43 knockout (KO) allele and one K258stop or Cx43 allele (K258stop/KO; Cx43/KO as control) were subjected to 1 h of ischaemia and 4 h of reperfusion by reversibly occluding the left anterior descending (LAD) coronary artery. Inducibility of ventricular tachyarrhythmias (VTs) was tested by applying an endocardial burst-pacing protocol during LAD occlusion. Separately, time course and the extent of acidification-induced closure of gap junction channels were tested by dual-voltage clamp. Infarct volume (as per cent of area at risk) was significantly larger in K258stop/KO hearts compared with Cx43/KO controls (42.2 +/- 3 vs. 30.4 +/- 1.7%, P = 0.004, n = 8 each). During LAD occlusion, K258stop/KO hearts had a higher incidence of pacing-induced VT and a higher frequency of occurrence of spontaneous premature ventricular beats. The occurrence of ventricular arrhythmias was also significantly larger in the K258stop/KO hearts during reperfusion. In separate experiments, we demonstrated reduced sensitivity to acidification-induced uncoupling in cell pairs obtained from K258stop/KO hearts.

CONCLUSION

Loss of the regulatory domain of Cx43 leads to an increase in infarct size and increased susceptibility to arrhythmias following acute coronary occlusion.

摘要

目的

在表达 K258stop 点突变型connexin43(Cx43)蛋白的小鼠心脏中发生急性心肌梗死,以评估 Cx43 调节对梗死面积和心律失常易感性的重要性。该 K258stop 突变阻止了 Cx43 通道的化学调节,包括通过低细胞内 pH 值进行调节。

方法和结果

Langendorff 灌流的携带有一个 Cx43 敲除(KO)等位基因和一个 K258stop 或 Cx43 等位基因(K258stop/KO;Cx43/KO 作为对照)的小鼠心脏通过可逆性阻塞左前降支(LAD)冠状动脉,经历 1 小时缺血和 4 小时再灌注。通过在 LAD 阻塞期间应用心内膜猝发起搏方案测试室性心动过速(VTs)的诱发性。分别通过双电压钳测试酸化诱导的缝隙连接通道关闭的时程和程度。梗死体积(按危险区面积的百分比计)在 K258stop/KO 心脏中明显大于 Cx43/KO 对照组(42.2 +/- 3%对 30.4 +/- 1.7%,P = 0.004,每组 8 只)。在 LAD 阻塞期间,K258stop/KO 心脏起搏诱导 VT 的发生率更高,自发性室性早搏的发生频率也更高。在再灌注期间,K258stop/KO 心脏的室性心律失常发生率也明显更大。在单独的实验中,我们证明了从 K258stop/KO 心脏获得的细胞对中对酸化诱导去偶联的敏感性降低。

结论

Cx43 调节域的缺失导致急性冠状动脉闭塞后梗死面积增加和心律失常易感性增加。

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