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敲低 CDX2 后牛胚胎干细胞的建立。

Establishment of bovine embryonic stem cells after knockdown of CDX2.

机构信息

The Key Laboratory of National Education Ministry for Mammalian Reproductive Biology and Biotechnology, Inner Mongolia University, Hohhot 010070, China.

Department of Basic Medicine, Bao Tou Medical College, Bao Tou 014040, China.

出版信息

Sci Rep. 2016 Jun 20;6:28343. doi: 10.1038/srep28343.

Abstract

Bovine embryonic stem cells (bESCs) have not been successfully established yet. One reason could be that CDX2, as the trophectoderm regulator, expresses in bovine inner cell mass (ICM), which probably becomes a technical barrier for maintaining the pluripotency of bESCs in vitro. We hypothesized that CDX2 knockdown (CDX2-KD) could remove such negative effort, which will be helpful for capturing complete and permanent capacity of pluripotency. Expression and localization of pluripotent genes were not affected in CDX2-KD blastocysts. The CDX2-KD bESCs grew into monolayers on feeder layer. Pluripotent genes expressed at an improved levels and lasted longer time in CDX2-KD bESCs, along with down-regulation of DNA methylation on promoters of both OCT4 and SOX2. The cystic structure typical for trophoblast cells did not show during culturing CDX2-KD bESCs. CDX2-KD bESC-derived Embryoid bodies showed with compact morphology and with the improved levels of differentiations in three germ layers. CDX2-KD bESCs still carried the capacity of forming teratomas with three germ layers after long-term culture. In summary, CDX2 in bovine ICM was inducer of trophoblast lineage with negative effect on maintenance of pluripotency of bESCs. Precise regulation CDX2 expression to switch on/off will be studied next for application on establishment of bESCs.

摘要

牛胚胎干细胞(bESCs)尚未成功建立。原因之一可能是 CDX2 作为滋养层调节剂,在牛内细胞团(ICM)中表达,这可能成为体外维持 bESCs 多能性的技术障碍。我们假设 CDX2 敲低(CDX2-KD)可以消除这种负面影响,这将有助于捕获多能性的完整和永久能力。CDX2-KD 囊胚中的多能基因表达和定位不受影响。CDX2-KD bESCs 在饲养层上生长为单层。多能基因的表达水平提高,持续时间延长,同时 OCT4 和 SOX2 启动子上的 DNA 甲基化下调。在培养 CDX2-KD bESCs 期间,没有出现典型的滋养细胞的囊状结构。CDX2-KD bESC 衍生的类胚体表现出紧凑的形态,并且在三个胚层中的分化水平提高。CDX2-KD bESCs 经过长期培养后仍然具有形成具有三个胚层的畸胎瘤的能力。总之,牛 ICM 中的 CDX2 是滋养层谱系的诱导物,对 bESCs 多能性的维持有负面影响。接下来将研究精确调控 CDX2 表达的开关,以应用于 bESCs 的建立。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e585/4913270/26d2c02621ef/srep28343-f1.jpg

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