Kosair Charities Pediatric Heart Research Program, Cardiovascular Innovation Institute, University of Louisville, Louisville, Kentucky, The United States of America.
Department of Cell Growth and Differentiation, Center for iPS Cell Research and Application (CiRA), Kyoto University, Kyoto, Japan.
Sci Rep. 2016 Jul 20;6:29933. doi: 10.1038/srep29933.
Human induced pluripotent stem cells (hiPSCs) are a robust source for cardiac regenerative therapy due to their potential to support autologous and allogeneic transplant paradigms. The in vitro generation of three-dimensional myocardial tissue constructs using biomaterials as an implantable hiPSC-derived myocardium provides a path to realize sustainable myocardial regeneration. We generated engineered cardiac tissues (ECTs) from three cellular compositions of cardiomyocytes (CMs), endothelial cells (ECs), and vascular mural cells (MCs) differentiated from hiPSCs. We then determined the impact of cell composition on ECT structural and functional properties. In vitro force measurement showed that CM+EC+MC ECTs possessed preferential electromechanical properties versus ECTs without vascular cells indicating that incorporation of vascular cells augmented tissue maturation and function. The inclusion of MCs facilitated more mature CM sarcomeric structure, preferential alignment, and activated multiple tissue maturation pathways. The CM+EC+MC ECTs implanted onto infarcted, immune tolerant rat hearts engrafted, displayed both host and graft-derived vasculature, and ameliorated myocardial dysfunction. Thus, a composition of CMs and multiple vascular lineages derived from hiPSCs and incorporated into ECTs promotes functional maturation and demonstrates myocardial replacement and perfusion relevant for clinical translation.
人类诱导多能干细胞(hiPSCs)是心脏再生治疗的强大来源,因为它们具有支持自体和同种异体移植范例的潜力。使用生物材料作为可植入的 hiPSC 衍生心肌来体外生成三维心肌组织构建体,为实现可持续的心肌再生提供了一条途径。我们从 hiPSC 分化而来的心肌细胞(CMs)、内皮细胞(ECs)和血管壁细胞(MCs)三种细胞成分中生成了工程化心脏组织(ECTs)。然后,我们确定了细胞组成对 ECT 结构和功能特性的影响。体外力测量表明,CM+EC+MC ECT 具有比没有血管细胞的 ECT 更优的机电特性,这表明血管细胞的加入增强了组织成熟和功能。MC 的包含促进了更成熟的 CM 肌节结构、优先对齐和激活多种组织成熟途径。植入到梗死、免疫耐受大鼠心脏上的 CM+EC+MC ECT 显示出既有宿主来源的血管,也有移植物来源的血管,并改善了心肌功能障碍。因此,由 hiPSCs 衍生的 CMs 和多种血管谱系组成,并整合到 ECTs 中,可促进功能成熟,并展示出与临床转化相关的心肌替代和灌注。