Faculty of Medicine and Health Technology, Tampere University, Arvo Ylpön katu 34, 33520, Tampere, Finland.
Biocenter Oulu Electron Microscopy Core Facility, University of Oulu, Oulu, Finland.
Sci Rep. 2022 Aug 5;12(1):13459. doi: 10.1038/s41598-022-17498-0.
Cardiomyocytes derived from human induced pluripotent stem cells (hiPSC) are widely used in in vitro biomedical research and testing. However, fully matured, adult cardiomyocyte characteristics have not been achieved. To improve the maturity and physiological relevance of hiPSC-derived cardiomyocytes, we co-cultured them with preconstructed vascular-like networks to form a functional, human cell-based cardiac tissue model. The morphology and gene expression profiles indicated advanced maturation in the cardiac tissue model compared to those of a cardiomyocyte monoculture. The cardiac tissue model's functionality was confirmed by measuring the effects of 32 compounds with multielectrode array and comparing results to human data. Our model predicted the cardiac effects with a predictive accuracy of 91%, sensitivity of 90% and specificity of 100%. The correlation between the effective concentration (EC50) and the reported clinical plasma concentrations was 0.952 (R = 0.905). The developed advanced human cell-based cardiac tissue model showed characteristics and functionality of human cardiac tissue enabling accurate transferability of gained in vitro data to human settings. The model is standardized and thus, it would be highly useful in biomedical research and cardiotoxicity testing.
由人诱导多能干细胞(hiPSC)衍生的心肌细胞广泛用于体外生物医学研究和测试。然而,尚未实现完全成熟的成年心肌细胞特征。为了提高 hiPSC 衍生的心肌细胞的成熟度和生理相关性,我们将它们与预先构建的血管样网络共培养,形成具有功能的基于人类细胞的心脏组织模型。与心肌细胞单培养相比,心脏组织模型的形态和基因表达谱表明其成熟度更高。通过使用多电极阵列测量 32 种化合物的作用,并将结果与人类数据进行比较,证实了心脏组织模型的功能。我们的模型预测心脏效应的准确性为 91%,灵敏度为 90%,特异性为 100%。有效浓度(EC50)与报告的临床血浆浓度之间的相关性为 0.952(R=0.905)。开发的先进的基于人类细胞的心脏组织模型显示出人类心脏组织的特征和功能,能够将体外获得的数据准确地转化为人类环境。该模型经过标准化,因此在生物医学研究和心脏毒性测试中非常有用。