Laboratory of Embryo Biotechnology, College of Life Science, Northeast Agricultural University, Harbin, China.
J Cell Physiol. 2020 Jul;235(7-8):5811-5822. doi: 10.1002/jcp.29514. Epub 2020 Jan 31.
Although we have obtained porcine pluripotent stem cell lines (pPSCs) from blastocysts, the cells exhibit flat clonal morphology and do not support single-cell passage. There is massive cell death after cell dissociation, and the efficiency of single-cell colony is generally ≤10%. In a recent study, we got a new pPSCs using two Wnt signaling pathway regulators CHIR99021 and XAV939. This cell had strong biological viability, small-domed morphology, and its cloning efficiency after dissociation was 80-90%. The CH/XAV-treated cells expressed elevated levels of pluripotent genes, and possessed differentiation abilities both in vitro and in vivo, proven by the formation of embryonic bodies and teratomas with three germ layers. Furthermore, we found that the combinative use of CHIR99021 and XAV939 resulted in β-catenin-maintained expression in the cytoplasm but not translocation to the nuclei for WNT/TCF activation. In the meanwhile, E-cadherin located on the cell membrane, thereby activated the PI3K/Akt signaling pathway to enhance the pluripotency of the cells. Our study obtained new pPSCs, which were even closer to the naïve state with only two small molecule inhibitors, and the improved pluripotency of pPSCs could facilitate transgenic manipulation and regenerative medicine research. Besides, our study casted a light on the understanding of pPSCs and the derivation of authentic porcine embryonic stem cells.
尽管我们已经从囊胚中获得了猪多能干细胞系(pPSCs),但这些细胞表现出扁平的克隆形态,不支持单细胞传代。细胞解离后会发生大量细胞死亡,单细胞集落的效率通常≤10%。在最近的一项研究中,我们使用两种 Wnt 信号通路调节剂 CHIR99021 和 XAV939 获得了一种新的 pPSCs。这种细胞具有很强的生物活力,呈小穹顶形态,解离后的克隆效率为 80-90%。经过处理的 CH/XAV 细胞表达高水平的多能基因,并且具有体外和体内分化能力,通过形成具有三个胚层的胚胎体和畸胎瘤得到证实。此外,我们发现 CHIR99021 和 XAV939 的联合使用导致β-连环蛋白在细胞质中保持表达,而不是向细胞核移位以激活 WNT/TCF。同时,E-钙黏蛋白位于细胞膜上,从而激活了 PI3K/Akt 信号通路,增强了细胞的多能性。我们的研究获得了新的 pPSCs,它们仅使用两种小分子抑制剂就更接近原始状态,并且 pPSCs 的增强多能性将有助于转基因操作和再生医学研究。此外,我们的研究为理解 pPSCs 和真正猪胚胎干细胞的衍生提供了新的视角。