Department of Animal Production, College of Food and Agricultural Sciences, King Saud University, Riyadh 11451, Saudi Arabia.
Department of Physiology, Faculty of Veterinary Medicine, Zagazig University, Zagazig 44519, Egypt.
Biomed Res Int. 2017;2017:1061589. doi: 10.1155/2017/1061589. Epub 2017 May 24.
Trophectoderm cells are the foremost embryonic cells to differentiate with prospective stem-cell properties. In the current study, we aimed at improving the current approach for trophoblast culture by using granulosa cells as feeders. Porcine granulosa cells (PGCs) compared to the conventional mouse embryonic fibroblasts (MEFs) were used to grow trophectoderm cells from hatched bovine blastocysts. Isolated trophectoderm cells were monitored and displayed characteristic epithelial/cuboidal morphology. The isolated trophectoderm cells expressed mRNA of homeobox protein , cytokeratin-8 , and interferon tau . The expression level was higher on PGCs compared to MEFs throughout the study. In addition, primary trophectoderm cell colonies grew faster on PGCs, with a doubling time of approximately 48 hrs, compared to MEFs. PGCs feeders produced a fair amount of 17-estradiol and progesterone. We speculated that the supplementation of sex steroids and still-unknown factors during the trophoblasts coculture on PGCs have helped to have better trophectoderm cell's growth than on MEFs. This is the first time to use PGCs as feeders to culture trophectoderm cells and it proved superior to MEFs. We propose PGCs as alternative feeders for long-term culture of bovine trophectoderm cells. This model will potentially benefit studies on the early trophoblast and embryonic development in bovines.
滋养层细胞是最先分化具有潜在干细胞特性的胚胎细胞。在本研究中,我们旨在通过使用颗粒细胞作为饲养细胞来改进当前的滋养层培养方法。与传统的小鼠胚胎成纤维细胞(MEFs)相比,猪颗粒细胞(PGCs)用于从孵化的牛胚泡中生长滋养层细胞。分离的滋养层细胞被监测并显示出特征性的上皮/立方形态。分离的滋养层细胞表达同源框蛋白、细胞角蛋白-8 和干扰素 tau 的 mRNA。在整个研究过程中,与 MEFs 相比,PGCs 上的表达水平更高。此外,与 MEFs 相比,滋养层细胞集落在 PGCs 上生长更快,倍增时间约为 48 小时。PGCs 饲养细胞产生了相当数量的 17-雌二醇和孕酮。我们推测,在 PGCs 上进行滋养层细胞共培养时补充性激素和未知因素有助于滋养层细胞的生长优于 MEFs。这是第一次使用 PGCs 作为饲养细胞来培养滋养层细胞,并且证明优于 MEFs。我们建议将 PGCs 作为牛滋养层细胞长期培养的替代饲养细胞。该模型将有助于牛早期滋养层和胚胎发育的研究。