Department of Animal and Poultry Science and Fisheries, Agricultural Institute, Iranian Research Organisation for Science and Technology (IROST), Tehran, Iran.
Embryo Biotechnology Laboratory, Animal Biotechnology Centre, National Dairy Research Institute (NDRI), Karnal, India.
Cell J. 2015 Summer;17(2):264-73. doi: 10.22074/cellj.2016.3728. Epub 2015 Jul 11.
In order to retain an undifferentiated pluripotent state, embryonic stem (ES) cells have to be cultured on feeder cell layers. However, use of feeder layers limits stem cell research, since experimental data may result from a combined ES cell and feeder cell response to various stimuli.
In this experimental study, a buffalo ES cell line was established from in vitro derived blastocysts and characterized by the Alkaline phosphatase (AP) and immunoflourescence staining of various pluripotency markers. We examined the effect of various factors like fibroblast growth factor 2 (FGF-2), leukemia inhibitory factor (LIF) and Y-27632 to support the growth and maintenance of bubaline ES cells on gelatin coated dishes, in order to establish feeder free culture systems. We also analyzed the effect of feeder-conditioned media on stem cell growth in gelatin based cultures both in the presence as well as in the absence of the growth factors.
The results showed that Y-27632, in the presence of FGF-2 and LIF, resulted in higher colony growth and increased expression of Nanog gene. Feeder-Conditioned Medium resulted in a significant increase in growth of buffalo ES cells on gelatin coated plates, however, feeder layer based cultures produced better results than gelatin based cultures. Feeder layers from buffalo fetal fibroblast cells can support buffalo ES cells for more than two years.
We developed a feeder free culture system that can maintain buffalo ES cells in the short term, as well as feeder layer based culture that can support the long term maintenance of buffalo ES cells.
为了保持未分化的多能状态,胚胎干细胞必须在饲养细胞层上培养。然而,饲养层的使用限制了干细胞研究,因为实验数据可能来自于胚胎干细胞和饲养细胞对各种刺激的共同反应。
在这项实验研究中,我们从体外衍生的囊胚中建立了水牛胚胎干细胞系,并通过碱性磷酸酶(AP)和各种多能性标志物的免疫荧光染色来进行鉴定。我们研究了不同因素(如成纤维细胞生长因子 2(FGF-2)、白血病抑制因子(LIF)和 Y-27632)对支持水牛胚胎干细胞在明胶包被培养皿上生长和维持的影响,以建立无饲养层培养系统。我们还分析了饲养层条件培养基对明胶培养中干细胞生长的影响,包括在存在和不存在生长因子的情况下。
结果表明,在 FGF-2 和 LIF 的存在下,Y-27632 导致更高的集落生长和 Nanog 基因的表达增加。饲养层条件培养基导致水牛胚胎干细胞在明胶包被板上的生长显著增加,然而,饲养层培养比明胶培养产生更好的结果。来自水牛胎儿成纤维细胞的饲养层可以支持水牛胚胎干细胞超过两年的时间。
我们开发了一种无饲养层培养系统,可以在短期内维持水牛胚胎干细胞,以及基于饲养层的培养系统,可以支持水牛胚胎干细胞的长期维持。