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首页> 外文期刊>Biomaterials >Mass preparation of size-controlled mouse embryonic stem cell aggregates and induction of cardiac differentiation by cell patterning method.
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Mass preparation of size-controlled mouse embryonic stem cell aggregates and induction of cardiac differentiation by cell patterning method.

机译:大规模制备大小受控的小鼠胚胎干细胞聚集体,并通过细胞图案方法诱导心脏分化。

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摘要

Embryonic stem cells (ESCs) are promising cell sources for cell-based therapy. It has been established that the formation of ESC aggregates promotes their differentiation into the derivatives of all three germ layers. ESC aggregates are generally prepared via the formation of suspended spherical aggregates called embryoid bodies (EBs). Because the differentiation efficiency depends on the size of EBs, it becomes one of the research topics how to prepare size-controlled EBs in a scalable manner for reproducible and high-throughput experiments. Here, we have developed a novel culture method that enables simple mass preparation of size-controlled ESC aggregates on a culture surface instead of floating EBs. We developed a maskless photolithography device that enabled rapid fabrication of micropatterned surfaces. Utilizing this device, we fabricated the culture substrates the surfaces of which comprised arrays of cell-adhesive circular micro-domains (100-400 microm in diameter) and the rest of non-cell-adhesive domains. We seeded mouse ESCs on this substrate and prepared size-controlled ESC aggregates on the micro-domains. We analyzed cardiac differentiation in the ESC aggregates and found that the optimal diameter of micro-domains was 200 microm. The present method is useful for the simple and reproducible mass preparation of ESC-derived differentiated cells and high-throughput assays.
机译:胚胎干细胞(ESC)是用于基于细胞的治疗的有希望的细胞来源。已经确定,ESC聚集体的形成促进它们分化为所有三个胚层的衍生物。 ESC聚集体通常通过形成称为胚状体(EB)的悬浮球形聚集体来制备。由于分化效率取决于EB的大小,因此如何以可扩展的方式为可重现和高通量实验制备尺寸控制的EB成为研究主题之一。在这里,我们开发了一种新颖的培养方法,可以简单地在培养表面上大规模制备尺寸受控的ESC聚集体,而不是漂浮的EB。我们开发了一种无掩模光刻设备,可以快速制造微图案表面。利用该装置,我们制造了培养底物,其表面包括细胞粘附性圆形微区阵列(直径为100-400微米)和其余非细胞粘附性微区阵列。我们在此基质上接种小鼠ESC,并在微域上制备了大小受控的ESC聚集体。我们分析了ESC聚集体中的心脏分化,发现微区的最佳直径为200微米。本方法对于ESC来源的分化细胞的简单和可重复的大量制备和高通量测定是有用的。

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