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Development of Human Induced Pluripotent Stem Cell Derived Co-Cultures of Cardiomyocytes and Endothelial Cells

机译:人诱导多能干细胞衍生的心肌细胞和内皮细胞共培养物的开发

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Cardiovascular disease is associated with myocardial infarction, arteriosclerosis, and cardiac arrhythmias, which lead to the segmental loss of functional beating cardiomyocytes. Numerous studies have investigated regenerative therapies involving stem cell transplantation using hydrogel scaffolds. However, these therapies have had limited success due to poor donor cell engraftment and low survival. One major contributing factor to the lack of success is the limited vascularization within the ischemic cardiac tissue and the scaffold. In this study we started to address these limitations by creating a novel co-culture of cardiomyocytes and endothelial cells derived from human induced pluripotent stem (iPS) cells using TGFβ1 as a secondary differentiation factor. TGFβ1 was added to an existing protocol that differentiates human iPS cells into cardiomyocytes to increase the endothelial cell population. We targeted CD 105 since it is a transmembrane receptor for TGFβ1, an important modulator of mesodermal differentiation, and is necessary for TGFβ1/ALK1 signaling which promotes the proliferation of endothelial cells. We determined the distribution of differentiated mesodermal cells using cell markers specific to progenitor (CD 105+) and mature (CD31+) endothelial cells along with cardiomyocytes (CTnT+) through fluorescence microscopy and flow cytometry analysis. We then assessed the differentiation of these iPSC-CPCs after seeding them into a hydrogel system of hyaluronic acid (HyA) to promote a 3D co-culture system.
机译:心血管疾病与心肌梗塞,动脉硬化和心律不齐相关,导致功能性跳动的心肌细胞节段性丢失。许多研究已经研究了涉及使用水凝胶支架进行干细胞移植的再生疗法。然而,由于供体细胞植入不良和存活率低,这些疗法的成功有限。缺乏成功的主要原因之一是缺血性心脏组织和支架内的有限血管化。在这项研究中,我们开始通过使用TGFβ1作为次级分化因子,创建源自人诱导多能干(iPS)细胞的心肌细胞和内皮细胞的新型共培养物,来解决这些局限性。 TGFβ1被添加到现有的方案中,该方案将人iPS细胞分化为心肌细胞以增加内皮细胞群。我们将CD 105作为靶向,因为它是TGFβ1的跨膜受体,TGFβ1是中胚层分化的重要调节剂,并且对于促进内皮细胞增殖的TGFβ1/ ALK1信号传导是必需的。我们通过荧光显微镜和流式细胞术分析,使用特异于祖细胞(CD 105+)和成熟内皮细胞(CD31 +)以及心肌细胞(CTnT +)的细胞标记物,确定了分化的中胚层细胞的分布。然后,我们在将这些iPSC-CPC植入透明质酸(HyA)的水凝胶系统中以促进3D共培养系统后,评估了它们的分化。

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