Pillekamp Frank, Halbach Marcel, Reppel Michael, Pfannkuche Kurt, Nazzal Rewa, Nguemo Filomain, Matzkies Matthias, Rubenchyk Olga, Hannes Tobias, Khalil Markus, Bloch Wilhelm, Sreeram Narayanswami, Brockmeier Konrad, Hescheler Juergen
Pediatric Cardiology, University of Cologne, Cologne, Germany.
Cell Physiol Biochem. 2009;23(1-3):65-74. doi: 10.1159/000204093. Epub 2009 Feb 18.
Human embryonic stem cell-derived cardiomyocytes (hESC-CMs) might provide cells to repopulate injured myocardium. Electrical coupling of these cells to the host myocardium is a prerequisite for improved functionality. The aim of this study was to investigate electrical interaction of hESC-CMs with myocardial tissue and to identify factors challenging functional integration. Beating clusters containing hESC-CMs were cocultured in vitro with viable slices of late-stage embryonic murine ventricles. Field potentials recorded with micro-electrode arrays and video data were analyzed. The effects of heptanol, electrical pacing, beta-adrenergic, and muscarinic stimulation on coupling were studied. Beating clusters integrated morphologically and functionally resulting in a synchronized beating pattern after two to four days of coculture. Heptanol-induced conduction block between transplanted cells and host tissue and immunoreactivity for connexin43 suggested electrical coupling via gap junctions. Beta-adrenergic or muscarinic stimulation induced uncoupling and arrhythmias probably due to genetically determined differences of hormonal modulation of spontaneous beating rates of transplanted cells and host tissue. HESC-CMs can integrate functionally and develop synchronized beating. Interventions unraveling the different electrophysiological properties of transplanted and host tissue induce functional disintegration. Successful cellular replacement has to improve coupling but should also aim to transplant cardiomyocytes with similar electrophysiological properties as the host tissue.
人胚胎干细胞衍生的心肌细胞(hESC-CMs)可能为受损心肌提供细胞进行再填充。这些细胞与宿主心肌的电耦合是功能改善的先决条件。本研究的目的是研究hESC-CMs与心肌组织的电相互作用,并确定挑战功能整合的因素。将含有hESC-CMs的搏动细胞团与晚期胚胎小鼠心室的活切片在体外共培养。分析用微电极阵列记录的场电位和视频数据。研究了庚醇、电起搏、β-肾上腺素能和毒蕈碱刺激对耦合的影响。搏动细胞团在共培养两到四天后在形态和功能上整合,形成同步搏动模式。庚醇诱导移植细胞与宿主组织之间的传导阻滞以及连接蛋白43的免疫反应性表明通过缝隙连接进行电耦合。β-肾上腺素能或毒蕈碱刺激诱导解偶联和心律失常,这可能是由于移植细胞和宿主组织自发搏动率的激素调节在基因上存在差异。hESC-CMs可以在功能上整合并发展出同步搏动。揭示移植组织和宿主组织不同电生理特性的干预措施会导致功能解体。成功的细胞替代必须改善耦合,但也应旨在移植与宿主组织具有相似电生理特性的心肌细胞。