Division of Physiology, Amsterdam UMC, Vrije University; Heart Failure & Arrhythmias, Amsterdam Cardiovascular Sciences.
Division of Physiology, Amsterdam UMC, Vrije University; Heart Failure & Arrhythmias, Amsterdam Cardiovascular Sciences; CytoCypher BV.
J Vis Exp. 2023 May 26(195). doi: 10.3791/65326.
Human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) represent a powerful tool for studying mutation-mediated changes in cardiomyocyte function and defining the effects of stressors and drug interventions. In this study, it is demonstrated that this optics-based system is a powerful tool to assess the functional parameters of hiPSC-CMs in 2D. By using this platform, it is possible to perform paired measurements in a well-preserved temperature environment on different plate layouts. Moreover, this system provides researchers with instant data analysis. This paper describes a method for measuring the contractility of unmodified hiPSC-CMs. Contraction kinetics are measured at 37 °C based on pixel correlation changes relative to a reference frame taken at relaxation at a 250 Hz sampling frequency. Additionally, simultaneous measurements of intracellular calcium transients can be acquired by loading the cell with a calcium-sensitive fluorophore, such as Fura-2. Using a hyperswitch, ratiometric calcium measurements can be performed on a 50 µm diameter illumination spot, corresponding to the area of the contractility measurements.
人诱导多能干细胞衍生的心肌细胞 (hiPSC-CMs) 代表了一种强大的工具,可用于研究突变介导的心肌细胞功能变化,并确定应激源和药物干预的影响。在这项研究中,证明了这种基于光学的系统是评估二维 hiPSC-CMs 功能参数的强大工具。通过使用该平台,可以在不同的板布局上在保存良好的温度环境中进行配对测量。此外,该系统为研究人员提供了即时数据分析。本文描述了一种测量未经修饰的 hiPSC-CMs 收缩性的方法。在 37°C 下基于相对于松弛时以 250 Hz 采样频率获取的参考帧的像素相关变化来测量收缩动力学。此外,通过加载钙敏荧光染料(如 Fura-2),可以同时获取细胞内钙瞬变的测量值。使用超敏开关,可以在 50 µm 直径的照明点上进行比率钙测量,该点对应于收缩性测量的区域。