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A reliable and economical method for gaining mouse embryonic fibroblasts capable of preparing feeder layers

机译:一种可靠且经济的方法来获得能够制备饲养层的小鼠胚胎成纤维细胞

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摘要

Mouse embryonic fibroblasts (MEFs) are widely used to prepare feeder layers for culturing embryonic stem cells (ESCs) or induced pluripotent stem cells (iPSCs) in vitro. Transportation lesions and exorbitant prices make the commercially obtained MEFs unsuitable for long term research. The aim of present study is to establish a method, which enables researchers to gain MEFs from mice and establish feeder layers by themselves in ordinary laboratories. MEFs were isolated from ICR mouse embryos at 12.5–17.5 day post-coitum (DPC) and cultured in vitro. At P2–P7, the cells were inactivated with mitomycin C or by X-ray irradiation. Then they were used to prepare feeder layers. The key factors of the whole protocol were analyzed to determine the optimal conditions for the method. The results revealed MEFs isolated at 12.5–13.5 DPC, and cultured to P3 were the best choice for feeder preparation, those P2 and P4–P5 MEFs were also suitable for the purpose. The P3–P5 MEFs treated with 10 μg/ml of mitomycin C for 3 h, or irradiated with X-ray at 1.5 Gy/min for 25 Gy were the most suitable feeder cells. Treating MEFs with 10 μg/ml of mitomycin C for 2.5 h, 15 μg/ml for 2.0 h, or irradiating the cells with 20 Gy of X-ray at 2.0 Gy/min could all serve as alternative methods for P3–P4 cells. Our study provides a reliable and economical way to obtain large amount of qualified MEFs for long term research of ESCs or iPSCs.
机译:小鼠胚胎成纤维细胞(MEF)被广泛用于制备饲养层,以在体外培养胚胎干细胞(ESC)或诱导多能干细胞(iPSC)。运输损伤和高昂的价格使得商业上获得的MEF不适合长期研究。本研究的目的是建立一种方法,使研究人员能够从小鼠中获得MEF,并在普通实验室中自行建立饲养层。 MEF分离于大肠后12.5–17.5天(ICC)的ICR小鼠胚胎中,并进行体外培养。在P2-P7,用丝裂霉素C或X射线照射使细胞失活。然后它们被用来准备饲养层。分析了整个方案的关键因素,以确定该方法的最佳条件。结果表明,在12.5–13.5 DPC处分离的MEF并培养至P3是准备饲养动物的最佳选择,P2和P4-P5的MEF也适用于此目的。最适合的饲养细胞是用10μg/ ml丝裂霉素C处理3h或以1.5Gy / min的X射线辐照25Gy的P3-P5 MEF。用10μg/ ml丝裂霉素C处理MEF 2.5小时,15μg/ ml处理2.0h或以20 Gy的X射线以2.0 Gy / min的剂量照射细胞均可作为P3-P4细胞的替代方法。我们的研究提供了一种可靠且经济的方式来获得大量合格的MEF,用于ESC或iPSC的长期研究。

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