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A Single-Cell and Feeder-Free Culture System for Monkey Embryonic Stem Cells

机译:猴子胚胎干细胞的单细胞和无饲养员培养系统

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摘要

Primate pluripotent stem cells (PSCs), including embryonic stem cells (ESCs) and induced pluripotent stem cells (iPSCs), hold great potential for research and application in regenerative medicine and drug discovery. To maximize primate PSC potential, a practical system is required for generating desired functional cells and reproducible differentiation techniques. Much progress regarding their culture systems has been reported to date; however, better methods would still be required for their practical use, particularly in industrial and clinical fields. Here we report a new single-cell and feeder-free culture system for primate PSCs, the key feature of which is an originally formulated serum-free medium containing FGF and activin. In this culture system, cynomolgus monkey ESCs can be passaged many times by single-cell dissociation with traditional trypsin treatment and can be propagated with a high proliferation rate as a monolayer without any feeder cells; further, typical PSC properties and genomic stability can be retained. In addition, it has been demonstrated that monkey ESCs maintained in the culture system can be used for various experiments such as in vitro differentiation and gene manipulation. Thus, compared with the conventional culture system, monkey ESCs grown in the aforementioned culture system can serve as a cell source with the following practical advantages: simple, stable, and easy cell maintenance; gene manipulation; cryopreservation; and desired differentiation. We propose that this culture system can serve as a reliable platform to prepare primate PSCs useful for future research and application.
机译:灵长类动物多能干细胞(PSC),包括胚胎干细胞(ESC)和诱导性多能干细胞(iPSC),在再生医学和药物发现方面具有巨大的研究和应用潜力。为了最大化灵长类动物PSC的潜力,需要一种实用的系统来产生所需的功能细胞和可再现的分化技术。迄今为止,有关其养殖系统的进展已有报道。但是,仍然需要更好的方法来实际使用,特别是在工业和临床领域。在这里,我们报告了一种针对灵长类PSC的新的单细胞和无饲养员培养系统,其主要特征是最初配制的含有FGF和激活素的无血清培养基。在这种培养系统中,食蟹猕猴ESC可以通过单细胞解离与传统胰蛋白酶处理进行多次传代,并且可以以高增殖率作为单层繁殖而没有任何饲养细胞。此外,可以保留典型的PSC特性和基因组稳定性。另外,已经证明了维持在培养系统中的猴子ESC可以用于各种实验,例如体外分化和基因操作。因此,与常规培养系统相比,在上述培养系统中生长的猴ESC可以作为细胞来源,具有以下实用优势:简单,稳定,易于细胞维持;基因操纵;冷冻保存和所需的差异化。我们建议,这种培养系统可以作为可靠的平台来准备灵长类PSC,以用于将来的研究和应用。

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