Jeong Jinsol, Lee Dong-Kyung, Choi Kwang-Hwan, Kim Dong-Wook, Lee Seokjong, Oh Jong-Nam, Ahn Yelim, Lee Chang-Kyu
Reproduction. 2025 Mar 11;169(4). doi: 10.1530/REP-24-0393. Print 2025 Apr 1.
Extraembryonic endoderm (XEN) cells can be derived from blastocyst primitive endoderm (PrE), becoming a useful tool for studying mammalian development, including early lineage segregation and embryo patterning. Establishment of stem cells representing the respective lineages in blastocysts has been robustly attempted in domestic animals, especially pigs, to reconstitute embryogenesis in vitro for comparative studies. Therefore, we developed a serum-free culture system for pig XEN cells by dissecting the signals governing the core gene network of the PrE lineage. The FGF, LIF and WNT signaling pathways and B27 supplements are essential for maintaining a rapid proliferation rate in pig XEN cells. These cells recapitulated the molecular features and differentiation capacity of the PrE lineage. Especially, the XEN cells incorporated into normal development, retaining cellular identity and contributing to the PrE lineage when injected into in vitro-produced porcine blastocysts. In addition, species-specific characteristics of pigs were observed, including the involvement of lipid metabolism and NANOG/GATA co-expression in XEN cells. Taken together, our findings can contribute to the expansion of the understanding of developmental biology and its biomedical applications by enabling reproducible and homogeneous porcine XEN cell culture.
胚外内胚层(XEN)细胞可从囊胚的原始内胚层(PrE)分化而来,成为研究哺乳动物发育(包括早期谱系分离和胚胎模式形成)的有用工具。在家畜尤其是猪中,人们一直在大力尝试建立代表囊胚中各个谱系的干细胞,以便在体外重建胚胎发生用于比较研究。因此,我们通过剖析调控PrE谱系核心基因网络的信号,开发了一种用于猪XEN细胞的无血清培养系统。FGF、LIF和WNT信号通路以及B27添加剂对于维持猪XEN细胞的快速增殖率至关重要。这些细胞概括了PrE谱系的分子特征和分化能力。特别是,当将XEN细胞注射到体外生产的猪囊胚中时,它们融入正常发育过程,保持细胞特性并对PrE谱系做出贡献。此外,还观察到猪的物种特异性特征,包括脂质代谢的参与以及XEN细胞中NANOG/GATA的共表达。综上所述,我们的研究结果有助于通过实现可重复且均匀的猪XEN细胞培养,扩展对发育生物学及其生物医学应用的理解。