Cao Shanbo, Wang Fang, Chen Zhisheng, Liu Zhong, Mei Cheng, Wu Haojia, Huang Junjiu, Li Chao, Zhou Lingjun, Liu Lin
School of Life Science, Sun Yat-Sen University, Guangzhou, China.
J Exp Zool A Ecol Genet Physiol. 2009 Jun 1;311(5):368-76. doi: 10.1002/jez.535.
Authentic bovine embryonic stem (ES) cell lines have not been established despite progress made for more than two decades. Isolation and culture of primary ES cell colonies are the first critical step towards establishment of stable ES cell lines. Here we report a novel method designated as "Separate and Seed" that contributes remarkably to efficient derivation of bovine primary ES-like cell colonies from blastocysts. These primary cultured bovine ES-like cells exhibit morphology typical of ES cells and express pluripotent molecular markers including Oct4, Nanog and alkaline phosphatase. Interestingly, bovine primary ES-like cell colonies distinctively express both stage-specific embryonic antigens 1 and 4 (SSEA1 and SSEA4), unlike mouse and human ES cells. These pluripotent markers may be used for characterization of authentic bovine ES cell lines in later studies. In contrast, whole embryos or inner cell mass (ICM) used for primary culture by conventional methods fails to produce primary bovine ES cell colonies that express all pluripotent stem cell markers shown above. Furthermore, bFGF improves growth and maintained undifferentiated state of bovine ES-like cells for several passages, whereas LIF and ERK inhibitor PD98059 known to promote pluripotency of mouse ES cells are unable to sustain bovine ES-like cells. Although continued efforts are required for improving long-term culture of bovine ES cells, this novel "Separate and Seed" method provides an initial effective step that may eventually lead to derivation of authentic bovine ES cell lines.
尽管二十多年来取得了进展,但真正的牛胚胎干细胞(ES)系尚未建立。分离和培养原代ES细胞集落是建立稳定ES细胞系的第一个关键步骤。在此,我们报告了一种名为“分离与接种”的新方法,该方法对从囊胚高效衍生牛原代类ES细胞集落有显著贡献。这些原代培养的牛类ES细胞表现出ES细胞典型的形态,并表达包括Oct4、Nanog和碱性磷酸酶在内的多能分子标记。有趣的是,与小鼠和人类ES细胞不同,牛原代类ES细胞集落特异性地同时表达阶段特异性胚胎抗原1和4(SSEA1和SSEA4)。这些多能标记物可用于后续研究中鉴定真正的牛ES细胞系。相比之下,通过传统方法用于原代培养的完整胚胎或内细胞团(ICM)未能产生表达上述所有多能干细胞标记物的牛原代ES细胞集落。此外,bFGF可改善牛类ES细胞的生长并在传代培养中维持其未分化状态,而已知能促进小鼠ES细胞多能性的LIF和ERK抑制剂PD98059无法维持牛类ES细胞。尽管在改善牛ES细胞的长期培养方面仍需持续努力,但这种新的“分离与接种”方法提供了一个初步的有效步骤,最终可能导致真正的牛ES细胞系的衍生。