首页> 外文期刊>Basic Research in Cardiology: Official Journal of the German Association of Cardiovascular Research >Mesenchymal stem cells neither fully acquire the electrophysiological properties of mature cardiomyocytes nor promote ventricular arrhythmias in infarcted rats
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Mesenchymal stem cells neither fully acquire the electrophysiological properties of mature cardiomyocytes nor promote ventricular arrhythmias in infarcted rats

机译:间充质干细胞既不能完全获得成熟心肌细胞的电生理特性,也不能促进梗死大鼠的室性心律失常

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Electrophysiological properties of implanted mesenchymal stem cells (MSCs) in infarcted hearts remain unclear, and their proarrhythmic effect is still controversial. The intent of this study was to investigate electrophysiological properties and proarrhythmic effects of MSCs in infarcted hearts. Rats were randomly divided into a myocardial infarction (MI) group, a MI-DMEM group (received DMEM medium injection) and MI-MSCs group (received MSCs injection). Survival analysis showed that the majority of engrafted MSCs died at day 9 after transplantation. Engrafted MSCs expressed cardiac markers (MYH, cTnI, Cx43), cardiac ion channel genes (Kv1.4, Kv4.2 and Kir2.1) and potassium currents (Ito, IK1 and IKDR), but did not express Nav1.5, Cav1.2, Na? current and Ca2? current during their survival. When induced by Ca2?, implanted MSCs exhibited no contraction ability after being isolated from the heart. Following 8-week electrocardiography monitoring, the cumulative occurrence of ventricular arrhythmias (VAs) was not different among the three groups. However, the prolonged QRS duration in infarcted rats without VAs was significantly decreased in the MI-MSCs group compared with the other two groups. The inducibility of VAs in the MI-MSCs group was much lower than that in the MI and MI-DMEM groups (41.20 vs. 86.67 % and 92.86 %; P0.0125). The ventricular effective refractory period in MI-MSCs group was prolonged in comparison with that in the MI and MI-DMEM groups (56.0 ± 8.8 vs. 47.7 ± 8.8 ms and 45.7 ± 6.2 ms; P0.01). These results demonstrate that MSCs do not acquire the electrophysiological properties of mature cardiomyocytes during the survival period in the infarcted hearts. However, they can alleviate the electrical vulnerability and do not promote ventricular arrhythmias.
机译:梗死心脏中植入的间充质干细胞(MSCs)的电生理特性仍不清楚,其心律失常作用仍存在争议。这项研究的目的是调查心肌梗塞心脏的电生理特性和心律失常的影响。将大鼠随机分为心肌梗塞(MI)组,MI-DMEM组(接受DMEM培养基注射)和MI-MSCs组(接受MSCs注射)。存活分析表明,大多数移植的MSC在移植后第9天死亡。植入的MSC表达心脏标志物(MYH,cTnI,Cx43),心脏离子通道基因(Kv1.4,Kv4.2和Kir2.1)和钾电流(Ito,IK1和IKDR),但不表达Nav1.5,Cav1 .2,不?电流和Ca2?在他们的生存过程中。当由Ca 2+诱导时,植入的MSC从心脏中分离后没有任何收缩能力。经过8周的心电图监测,三组间室性心律失常(VA)的累积发生率没有差异。但是,与其他两组相比,MI-MSCs组的无VA梗死大鼠的QRS延长时间明显减少。 MI-MSCs组中VAs的诱导性远低于MI和MI-DMEM组(41.20 vs. 86.67%和92.86%; P 0.0125)。与MI组和MI-DMEM组相比,MI-MSCs组的心室有效不应期延长(56.0±8.8 vs. 47.7±8.8 ms和45.7±6.2 ms; P 0.01)。这些结果表明,在梗塞心脏的存活期中,MSC没有获得成熟心肌细胞的电生理特性。然而,它们可以减轻电的脆弱性并且不促进室性心律不齐。

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