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首页> 外文期刊>Ecological restoration >Human induced pluripotent stem cell line with genetically encoded fluorescent voltage indicator generated via CRISPR for action potential assessment post-cardiogenesis
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Human induced pluripotent stem cell line with genetically encoded fluorescent voltage indicator generated via CRISPR for action potential assessment post-cardiogenesis

机译:人类诱导多能干细胞系与遗传编码的荧光电压指示器通过CRISPR用于动作潜在评估后心肌发生

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摘要

Genetically encoded fluorescent voltage indicators, such as ArcLight, have been used to faithfully report action potentials (APs) in human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs). However, the ArcLight expression, in all cases, relied on a high number of lentiviral vector-mediated random genome integrations (8-12 copy/cell), raising concerns such as gene disruption and alteration of global and local gene expression, as well as loss or silencing of reporter genes after differentiation. Here, we report the use of clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9 nuclease technique to develop a hiPSC line stably expressing ArcLight from the AAVS1 safe harbor locus. The hiPSC line retained proliferative ability with a growth rate similar to its parental strain. Optical recording with conventional epifluorescence microscopy allowed the detection of APs as early as 21 days postdifferentiation, and could be repeatedly monitored for at least 5 months. Moreover, quantification and analysis of the APs of ArcLight-CMs identified two distinctive subtypes: a group with high frequency of spontaneous APs of small amplitudes that were pacemaker-like CMs and a group with low frequency of automaticity and large amplitudes that resembled the working CMs. Compared with FluoVolt voltage-sensitive dye, although dimmer, the ArcLight reporter exhibited better optical performance in terms of phototoxicity and photostability with comparable sensitivities and signal-to-noise ratios. The hiPSC line with targeted ArcLight engineering design represents a useful tool for studying cardiac development or hiPSC-derived cardiac disease models and drug testing.
机译:遗传编码的荧光电压指示器,例如芳曲线,用于忠实地报告人诱导的多能干细胞衍生心肌细胞(HIPSC-CM)中的动作电位(APS)。然而,在所有情况下,在所有情况下,依赖于大量的慢病毒载体介导的随机基因组集成(8-12拷贝/细胞),提高了全球和局部基因表达的基因破坏和改变等担忧,以及分化后报告基因的损失或沉默。在这里,我们报告使用聚类定期间隙的短语重复(CRISPR)/ CAS9核酸酶技术,从AAVS1安全港口轨道稳定地表达曲线的HIPSC线。 HIPSC系列保留了增殖能力,其生长率类似于其亲本菌株。具有常规离荧光显微镜的光学记录允许早期检测APS后21天,并且可以重复监测至少5个月。此外,ARClight-CMS AP的量化和分析鉴定了两个独特的亚型:具有高频率的小频率的小振荡,是起搏器样CMS和具有低频率的自动频率和具有类似工作CMS的大幅度的组。与荧光电压敏感染料相比,虽然调光器,芳曲线记者在光毒性和光稳定性方面表现出更好的光学性能,具有可比灵敏度和信噪比。具有目标ArClight Engineering Design的HIPSC系列代表了学习心脏发育或HIPSC衍生心脏病模型和药物检测的有用工具。

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