AgResearch, Ruakura Research Centre, Hamilton 3214, New Zealand.
Stem Cells Dev. 2013 Jun 1;22(11):1728-42. doi: 10.1089/scd.2012.0481. Epub 2013 Feb 19.
Embryonic pluripotent stem cells (ePSCs) can generate all somatic cell types, as well as functional gametes. In mouse and rat, derivation of ePSCs from the early epiblast is promoted by the double inhibition ("2i") of mitogen-activated protein kinase kinase (MAP2K), antagonizing fibroblast growth factor signaling (FGF), and glycogen synthase kinase 3 (GSK3), stimulating the WNT pathway. However, it has remained unclear whether this culture regime is applicable to nonrodent livestock species. Here we report the generation of bovine ePSCs under minimal conditions. Inner cell masses (ICMs) were immunosurgically isolated from in vitro fertilized bovine blastocysts and cultured feeder-free in 2i medium. Dual kinase inhibition primed bovine ICMs for stem cell derivation and sustained expression of epiblast-specific pluripotency markers SOX2 and NANOG, while repressing the hypoblast marker GATA4. Following mechanical passage, 2i supported limited proliferation for several weeks. Continuously cultured ePSC lines expressed discriminatory markers of naïve pluripotency and primordial germ cells, but not of primed epiblast stem cells. In female ePSCs, most OCT4-positive cells lacked epigenetically silenced X-chromosomes, displaying a diagnostic feature of naïve pluripotency. Bovine ePSCs maintained a normal karyotype and differentiated into derivatives of all three germ layers in suspension culture. This culture system provides a screening platform for factors that maintain long-term proliferation of pluripotent embryonic cattle cells without genetic intervention.
胚胎多能干细胞 (ePSCs) 可以生成所有体细胞类型,以及功能性配子。在小鼠和大鼠中,通过双抑制(“2i”)丝裂原活化蛋白激酶激酶 (MAP2K),拮抗成纤维细胞生长因子信号 (FGF),和糖原合成酶激酶 3 (GSK3),刺激 WNT 途径,促进早期上胚层中的 ePSCs 的产生。然而,这种培养体系是否适用于非啮齿类家畜物种仍然不清楚。在这里,我们报告了在最小条件下生成牛 ePSCs 的方法。通过免疫手术从体外受精的牛囊胚中分离内细胞团 (ICM),并在 2i 培养基中无饲养层培养。双激酶抑制使牛 ICM 为干细胞的产生做好准备,并维持胚胎外胚层特异性多能性标记物 SOX2 和 NANOG 的表达,同时抑制下胚层标记物 GATA4。经过机械传递后,2i 支持了数周的有限增殖。连续培养的 ePSC 系表达了原始多能性和原始生殖细胞的鉴别标记物,但没有表达原始外胚层干细胞的标记物。在雌性 ePSCs 中,大多数 OCT4 阳性细胞缺乏表观遗传沉默的 X 染色体,表现出原始多能性的诊断特征。牛 ePSCs 保持正常核型,并在悬浮培养中分化为三个胚层的衍生物。该培养系统为筛选维持多能性胚胎牛细胞长期增殖而不进行遗传干预的因素提供了一个筛选平台。