Division of Animal Sciences & Bond Life Sciences Center, University of Missouri-Columbia, 65211, USA.
Cell Tissue Res. 2012 Sep;349(3):809-24. doi: 10.1007/s00441-012-1371-2. Epub 2012 Mar 17.
This review focuses on a now well-established model for generating cells of the trophoblast (TB) lineage by treating human embryonic stem cells (ESC) and induced pluripotent stem cells (iPSC) with the growth factor BMP4. We first discuss the opposing roles of FGF2 and BMP4 in directing TB formation and the need to exclude the former from the growth medium to minimize the co-induction of mesoderm and endoderm. Under these conditions, there is up-regulation of several transcription factors implicated in TB lineage emergence within 3 h of BMP4 exposure and, over a period of days and especially under a high O(2) gas atmosphere, gradual appearance of cell types carrying markers for more differentiated TB cell types, including extravillous TB and syncytioTB. We describe the potential value of including low molecular weight pharmaceutical agents that block activin A (INHBA) and FGF2 signaling to support BMP4-directed differentiation. We contend that the weight of available evidence supports the contention that BMP4 converts human ESC and iPSC of the so-called epiblast type unidirectionally to TB. We also consider the argument that BMP4 treatment of human ESC in the absence of exogenous FGF2 leads only to the emergence of mesoderm derivatives to be seriously flawed. Instead, we propose that, when signaling networks supporting pluripotency ESC or iPSC become unsustainable and when specification towards extra-embryonic mesoderm and endoderm are rendered inoperative, TB emerges as a major default state to pluripotency.
这篇综述重点介绍了一种现已成熟的方法,通过用生长因子 BMP4 处理人胚胎干细胞(ESC)和诱导多能干细胞(iPSC),来生成滋养层(TB)谱系的细胞。我们首先讨论了 FGF2 和 BMP4 在指导 TB 形成中的相反作用,以及需要从生长培养基中排除前者,以最大程度地减少中胚层和内胚层的共同诱导。在这些条件下,BMP4 暴露后 3 小时内,几个参与 TB 谱系出现的转录因子上调,并且在数天的时间内,尤其是在高氧气体气氛下,逐渐出现携带更分化的 TB 细胞类型标志物的细胞类型,包括绒毛外 TB 和合体 TB。我们描述了包含阻断激活素 A(INHBA)和 FGF2 信号的小分子药物的潜在价值,以支持 BMP4 指导的分化。我们认为,现有证据的权重支持了 BMP4 将所谓的上胚层类型的人 ESC 和 iPSC 单向转化为 TB 的观点。我们还认为,BMP4 处理没有外源 FGF2 的人 ESC 只会导致中胚层衍生物出现的论点存在严重缺陷。相反,我们提出,当支持多能性 ESC 或 iPSC 的信号网络变得不可持续,并且胚胎外中胚层和内胚层的特化变得无法操作时,TB 作为多能性的主要默认状态出现。