Working Group Sachinidis, Center for Physiology, Faculty of Medicine and University Hospital Cologne, The University of Cologne, 50931 Cologne, Germany.
Bioras Company, Kaarsbergsvej 2, 8400 Ebeltoft, Denmark.
Cells. 2022 Apr 9;11(8):1280. doi: 10.3390/cells11081280.
Live-cell imaging techniques are essential for acquiring vital physiological and pathophysiological knowledge to understand and treat heart disease. For live-cell imaging of transient alterations of [Ca] in human cardiomyocytes, we engineered human-induced pluripotent stem cells carrying a genetically-encoded Ca-indicator (GECI). To monitor sarcomere shortening and relaxation in cardiomyocytes in real-time, we generated a α-cardiac actinin (ACTN2)-copepod (cop) green fluorescent protein (GFP)-human-induced pluripotent stem cell line by using the CRISPR-Cas9 and a homology directed recombination approach. The engineered human-induced pluripotent stem cells were differentiated in transgenic GECI-enhanced GFP-cardiomyocytes and ACTN2-copGFP-cardiomyocytes, allowing real-time imaging of [Ca] transients and live recordings of the sarcomere shortening velocity of ACTN2-copGFP-cardiomyocytes. We developed a video analysis software tool to quantify various parameters of sarcoplasmic Ca fluctuations recorded during contraction of cardiomyocytes and to calculate the contraction velocity of cardiomyocytes in the presence and absence of different drugs affecting cardiac function. Our cellular and software tool not only proved the positive and negative inotropic and lusitropic effects of the tested cardioactive drugs but also quantified the expected effects precisely. Our platform will offer a human-relevant in vitro alternative for high-throughput drug screenings, as well as a model to explore the underlying mechanisms of cardiac diseases.
活细胞成像技术对于获取重要的生理和病理生理学知识,从而理解和治疗心脏病至关重要。为了对人类心肌细胞中[Ca]的瞬时变化进行活细胞成像,我们构建了携带基因编码钙指示剂(GECI)的人诱导多能干细胞。为了实时监测心肌细胞中肌节的缩短和松弛,我们使用 CRISPR-Cas9 和同源定向重组方法生成了一种α-心肌肌球蛋白重链(ACTN2)-桡足类(cop)绿色荧光蛋白(GFP)-人诱导多能干细胞系。工程化的人诱导多能干细胞在转基因 GECI 增强 GFP-心肌细胞和 ACTN2-copGFP-心肌细胞中分化,允许实时成像[Ca]瞬变,并对 ACTN2-copGFP-心肌细胞的肌节缩短速度进行活细胞记录。我们开发了一种视频分析软件工具,用于量化心肌收缩过程中记录的肌浆 Ca 波动的各种参数,并计算在存在和不存在影响心脏功能的不同药物的情况下心肌细胞的收缩速度。我们的细胞和软件工具不仅证明了测试的心脏活性药物的正性和负性变力和变时作用,而且还精确地量化了预期的作用。我们的平台将为高通量药物筛选提供一种与人相关的体外替代方法,并为探索心脏疾病的潜在机制提供一种模型。