首页> 外文期刊>Journal of cellular biochemistry. >Three-dimensional co-culture facilitates the differentiation of embryonic stem cells into mature cardiomyocytes.
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Three-dimensional co-culture facilitates the differentiation of embryonic stem cells into mature cardiomyocytes.

机译:三维共培养有助于将胚胎干细胞分化为成熟的心肌细胞。

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The cardiomyocyte (CM) differentiation of embryonic stem cells (ESCs) is routinely cultured as two-dimensional (2D) monolayer, which doesn't mimic in vivo physiological environment and may lead to low differentiated level of ESCs. Here, we develop a novel strategy that enhances CM differentiation of ESCs in collagen matrix three-dimensional (3D) culture combined with indirect cardiac fibroblasts co-culture. ESCs were cultured in hanging drops to form embryoid bodies (EBs) and then applied on collagen matrix. The EBs were indirectly co-cultured with cardiac fibroblasts by the hanging cell culture inserts (PET 1 microm). The molecular expressions and ultrastructural characteristics of ESC-derived CMs (ESCMs) were analyzed by real time RT-PCR, immunocytochemistry, and Transmission Electron Microscopy (TEM). We found that the percentage of beating EBs with cardiac fibroblasts co-culture was significantly higher than that without co-culture after differentiation period of 8 days. Type I collagen used as 3D substrates enhanced the late-stage CM differentiation of ESCs and had effect on ultrastructural mature of ESCMs in late-stage development. The combined effects of 3D and co-culture that mimic in vivo physiological environment further improved the efficiency of CM differentiation from ESCs, resulting in fiber-like structures of cardiac cells with organized sarcomeric structure in ESCMs. This novel 3D co-culture system emphasizes the fact that the ESC differentiation is actively responding to cues from their environment and those cues can drive phenotypic control, which provides a useful in vitro model to investigate CM differentiation of stem cells.
机译:胚胎干细胞(ESC)的心肌(CM)分化通常以二维(2D)单层培养,这不能模仿体内生理环境,并且可能导致ESC分化水平低。在这里,我们开发了一种新颖的策略,可增强胶原基质三维(3D)培养与间接心脏成纤维细胞共培养相结合的ESC的CM分化。在悬滴中培养ESC,形成胚状体(EBs),然后将其涂在胶原蛋白基质上。通过悬挂细胞培养插入物(PET 1微米)将EB与心脏成纤维细胞间接共培养。通过实时RT-PCR,免疫细胞化学和透射电镜(TEM)分析了ESC衍生的CMs(ESCMs)的分子表达和超微结构特征。我们发现,在8天的分化期之后,与心脏成纤维细胞共培养的跳动EB的百分比显着高于没有共培养的EB。用作3D底物的I型胶原蛋白增强了ESC的晚期CM分化,并在晚期发育中影响了ESCM的超微结构成熟。模拟体内生理环境的3D和共培养的联合作用进一步提高了CM从ESC分化的效率,从而在ESCM中产生了具有组织化肌节结构的心肌细胞纤维状结构。这种新颖的3D共培养系统强调了一个事实,即ESC分化正在积极响应来自其环境的线索,这些线索可以驱动表型控制,这为研究干细胞的CM分化提供了有用的体外模型。

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