首页> 美国卫生研究院文献>American Journal of Translational Research >Transcription factor Tbx18 induces the differentiation of c-kit+ canine mesenchymal stem cells (cMSCs) into SAN-like pacemaker cells in a co-culture model in vitro
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Transcription factor Tbx18 induces the differentiation of c-kit+ canine mesenchymal stem cells (cMSCs) into SAN-like pacemaker cells in a co-culture model in vitro

机译:转录因子Tbx18在体外共培养模型中诱导c-kit +犬间充质干细胞(cMSC)分化为SAN样起搏器细胞

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摘要

Bone mesenchymal stem cells (MSCs), as well as cardiomyocytes, are derived from early mesoderm, becoming committed to their fate under the influence of different differentiation factors. We examined whether the overexpression of Tbx18 can induce the differentiation of c-kit+ cMSCs into a phenotype similar to that of native pacemaker cells and whether these transfected cells can couple to adjacent atrial cells with functional consequences. The c-kit+ cMSCs were first sorted, then transfected with different lentiviral vectors. Tbx18-c-kit+ cMSCs represented the experimental group, while EYFP-c-kit+ cMSCs and canine sinoatrial node (SAN) cells were used as controls. Within days of transfection, the hyperpolarization-activated cyclic nucleotide-gated (HCN) channel HCN4 protein and gap junction protein Connexin 45 (Cx45) expression in Tbx18-c-kit+ cMSCs were 12-fold and 5.6-fold higher, respectively, than that in EYFP-c-kit+ cMSCs. After co-culture with canine atrial cells in vitro for three days, the funny currents (If) were recorded in the Tbx18-c-kit+ cMSCs, but not in EYFP-c-kit+ cMSCs. The trend of these If currents was highly similar to that of SAN cells, although the current density was smaller. The Tbx18-EYFP-c-kit+ cMSCs showed responsiveness to β-adrenergic stimulation, and the intracellular cyclic adenosine monophosphate (cAMP) level was higher than that in EYFP-c-kit+ cMSCs. The Tbx18-EYFP-c-kit+ cMSCs delivered fluorescent dye to neighboring atrial cells via gap junctions, thus these cell pairs could communicate as a pacemaker unit. We propose that the overexpression of Tbx18 in c-kit+ cMSCs induces their differentiation to SAN-like pacemaker cells.
机译:骨髓间充质干细胞(MSC)以及心肌细胞均来自早期中胚层,并在不同分化因子的影响下致力于其命运。我们检查了Tbx18的过表达是否可以诱导c-kit + cMSCs分化为与天然起搏器细胞相似的表型,以及这些转染的细胞是否可以与相邻的心房细胞偶联而产生功能性后果。首先对c-kit + cMSC进行分选,然后用不同的慢病毒载体转染。以Tbx18-c-kit + cMSCs为实验组,以EYFP-c-kit + cMSCs和犬窦房结(SAN)细胞为对照组。在转染的几天内,Tbx18-c-kit + cMSC中超极化激活的环核苷酸门控(HCN)通道HCN4蛋白和间隙连接蛋白Connexin 45(Cx45)表达分别是12倍和5.6倍分别比EYFP-c-kit + cMSC高出三倍。与犬心房细胞体外共培养三天后,有趣的电流(If)记录在Tbx18-c-kit + cMSCs中,但未记录在EYFP-c-kit 中+ cMSC。这些If电流的趋势与SAN电池的趋势高度相似,尽管电流密度较小。 Tbx18-EYFP-c-kit + cMSCs对β-肾上腺素能刺激具有反应性,细胞内环磷酸腺苷(cAMP)水平高于EYFP-c-kit + < / sup> cMSC。 Tbx18-EYFP-c-kit + cMSCs通过间隙连接将荧光染料传递到邻近的心房细胞,因此这些细胞对可以作为起搏器单元进行通讯。我们建议在c-kit + cMSCs中Tbx18的过表达诱导其向SAN样起搏器细胞的分化。

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