Department of Experimental Pharmacology and Toxicology, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
PLoS One. 2011;6(10):e26397. doi: 10.1371/journal.pone.0026397. Epub 2011 Oct 20.
Human embryonic stem cell (hESC) progenies hold great promise as surrogates for human primary cells, particularly if the latter are not available as in the case of cardiomyocytes. However, high content experimental platforms are lacking that allow the function of hESC-derived cardiomyocytes to be studied under relatively physiological and standardized conditions. Here we describe a simple and robust protocol for the generation of fibrin-based human engineered heart tissue (hEHT) in a 24-well format using an unselected population of differentiated human embryonic stem cells containing 30-40% α-actinin-positive cardiac myocytes. Human EHTs started to show coherent contractions 5-10 days after casting, reached regular (mean 0.5 Hz) and strong (mean 100 µN) contractions for up to 8 weeks. They displayed a dense network of longitudinally oriented, interconnected and cross-striated cardiomyocytes. Spontaneous hEHT contractions were analyzed by automated video-optical recording and showed chronotropic responses to calcium and the β-adrenergic agonist isoprenaline. The proarrhythmic compounds E-4031, quinidine, procainamide, cisapride, and sertindole exerted robust, concentration-dependent and reversible decreases in relaxation velocity and irregular beating at concentrations that recapitulate findings in hERG channel assays. In conclusion this study establishes hEHT as a simple in vitro model for heart research.
人类胚胎干细胞(hESC)后代有望成为人类原代细胞的替代品,尤其是在无法获得后者的情况下,如心肌细胞。然而,缺乏能够在相对生理和标准化条件下研究 hESC 衍生的心肌细胞功能的高内涵实验平台。在这里,我们描述了一种简单而强大的方案,使用未分选的分化人类胚胎干细胞群体在 24 孔板中生成纤维蛋白基的人类工程心脏组织(hEHT),其中包含 30-40% 的α-辅肌动蛋白阳性心肌细胞。在铸造后 5-10 天,人类 EHT 开始显示出连贯的收缩,持续 8 周达到规则(平均 0.5 Hz)和强(平均 100 µN)收缩。它们显示出密集的纵向排列、相互连接和横纹肌细胞网络。自发的 hEHT 收缩通过自动视频光学记录进行分析,并显示出对钙和β-肾上腺素能激动剂异丙肾上腺素的变时反应。致心律失常化合物 E-4031、奎尼丁、普鲁卡因胺、西沙必利和司他丁在浓度依赖性和可逆地降低松弛速度和不规则搏动方面表现出强大的作用,这些浓度再现了 hERG 通道测定中的发现。总之,这项研究确立了 hEHT 作为心脏研究的简单体外模型。