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Cyclooxygenases Inhibitors Efficiently Induce Cardiomyogenesis in Human Pluripotent Stem Cells

机译:环氧合酶抑制剂有效诱导人多能干细胞的心肌发生。

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摘要

Application of human pluripotent stem cell-derived cardiomyocytes (hPSC-CMs) is limited by the challenges in their efficient differentiation. Recently, the Wingless (Wnt) signaling pathway has emerged as the key regulator of cardiomyogenesis. In this study, we evaluated the effects of cyclooxygenase inhibitors on cardiac differentiation of hPSCs. Cardiac differentiation was performed by adherent monolayer based method using 4 hPSC lines (HES3, H9, IMR90, and ES4SKIN). The efficiency of cardiac differentiation was evaluated by flow cytometry and RT-qPCR. Generated hPSC-CMs were characterised using immunocytochemistry, electrophysiology, electron microscopy, and calcium transient measurements. Our data show that the COX inhibitors Sulindac and Diclofenac in combination with CHIR99021 (GSK-3 inhibitor) efficiently induce cardiac differentiation of hPSCs. In addition, inhibition of COX using siRNAs targeted towards COX-1 and/or COX-2 showed that inhibition of COX-2 alone or COX-1 and COX-2 in combination induce cardiomyogenesis in hPSCs within 12 days. Using IMR90-Wnt reporter line, we showed that inhibition of COX-2 led to downregulation of Wnt signalling activity in hPSCs. In conclusion, this study demonstrates that COX inhibition efficiently induced cardiogenesis via modulation of COX and Wnt pathway and the generated cardiomyocytes express cardiac-specific structural markers as well as exhibit typical calcium transients and action potentials. These cardiomyocytes also responded to cardiotoxicants and can be relevant as an in vitro cardiotoxicity screening model.
机译:人类多能干细胞衍生的心肌细胞(hPSC-CMs)的应用受到其有效分化挑战的限制。最近,无翼(Wnt)信号通路已成为心肌发生的关键调节器。在这项研究中,我们评估了环氧合酶抑制剂对hPSCs心脏分化的影响。使用4 hPSC系(HES3,H9,IMR90和ES4SKIN)通过基于粘附单层的方法进行心脏分化。通过流式细胞仪和RT-qPCR评估心脏分化的效率。使用免疫细胞化学,电生理,电子显微镜和钙瞬变测量来表征生成的hPSC-CM。我们的数据表明,COX抑制剂舒林酸和双氯芬酸与CHIR99021(GSK-3抑制剂)联合有效诱导hPSC的心脏分化。此外,使用针对COX-1和/或COX-2的siRNA抑制COX显示,单独抑制COX-2或联合抑制COX-1和COX-2可在12天内诱导hPSC的心肌发生。使用IMR90-Wnt报告基因系,我们表明抑制COX-2导致hPSC中Wnt信号活性的下调。总之,这项研究表明,COX抑制通过调节COX和Wnt途径有效地诱导了心脏发生,并且生成的心肌细胞表达了心脏特异性的结构标记,并表现出典型的钙瞬变和动作电位。这些心肌细胞也对心脏毒性物质有反应,并且可能与体外心脏毒性筛选模型有关。

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