3D human cardiac muscle on a chip: Quantification of contractile force of human iPS-derived cardiomyocytes

Y. Morimoto, S. Mori, S. Takeuchi
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引用次数: 4

Abstract

We propose a method for constructing fiber-type three-dimensional (3D) tissue of human iPS-derived cardiomyocytes and quantifying its contractile force in response to the addition of drug. By culturing the cardiomyocytes in micropatterned hydrogel with anchors, we succeeded in fabrication of the fibers with aligned cardiomyocytes and fixation of the fiber edges to the anchors. Since the fiber generated contractile force in a single direction due to alignment of cardiomyocytes, we can measure the contractile force accurately. Furthermore, as a demonstration of drug testing, we quantified contractile frequency and force in accordance with concentrations of pilsicainide. We believed that the fiber of human iPS-derived cardiomyocytes will be used in pharmacokinetic applications for drug development.
芯片上的三维人体心肌:人类ips衍生心肌细胞收缩力的量化
我们提出了一种构建人类ips来源的心肌细胞纤维型三维(3D)组织的方法,并量化其对药物添加的收缩力。通过在微图案水凝胶中培养带锚的心肌细胞,我们成功地制造了具有排列心肌细胞的纤维,并将纤维边缘固定在锚上。由于纤维由于心肌细胞的排列而在单一方向上产生收缩力,因此我们可以准确地测量收缩力。此外,作为药物测试的演示,我们量化了收缩频率和力,根据匹西卡因的浓度。我们相信,人类ips来源的心肌细胞纤维将用于药物开发的药代动力学应用。
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