首页> 外文期刊>Stem cells international >Tumorigenic and Differentiation Potentials of Embryonic Stem Cells Depend on TGF beta Family Signaling: Lessons from Teratocarcinoma Cells Stimulated to Differentiate with Retinoic Acid
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Tumorigenic and Differentiation Potentials of Embryonic Stem Cells Depend on TGF beta Family Signaling: Lessons from Teratocarcinoma Cells Stimulated to Differentiate with Retinoic Acid

机译:胚胎干细胞的致瘤和分化潜力取决于TGFβ系列信号:刺激畸胎癌细胞的课程,以与视黄酸分化

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摘要

A significant challenge for the development of safe pluripotent stem cell-based therapies is the incomplete in vitro differentiation of the pluripotent stem cells and the presence of residual undifferentiated cells initiating teratoma development after transplantation in recipients. To understand the mechanisms of incomplete differentiation, a comparative study of retinoic acid-induced differentiation of mouse embryonic stem (ES) and teratocarcinoma (EC) cells was conducted. The present study identified differences in proliferative activity, differentiation, and tumorigenic potentials between ES and EC cells. Higher expression of Nanog and Mvh, as well as Activin A and BMP4, was found in undifferentiated ES cells than in EC cells. However, the expression levels of Activin A and BMP4 increased more sharply in the EC cells during retinoic acid-induced differentiation. Stimulation of the Activin/Nodal and BMP signaling cascades and inhibition of the MEK/ERK and PI3K/Act signaling pathways resulted in a significant decrease in the number of Oct4-expressing ES cells and a loss of tumorigenicity, similar to retinoic acidstimulated EC cells. Thus, this study demonstrates that a differentiation strategy that modulates prodifferentiation and antiproliferative signaling in ES cells may be effective for eliminating tumorigenic cells and may represent a valuable tool for the development of safe stem cell therapeutics.
机译:对基于安全多能干细胞的疗法的发展的重大挑战是多能干细胞的体外分化的不完全分化,以及在接受者移植后发起畸胎瘤发育的残留未分化细胞的存在。为了了解分化不完全分化的机制,进行了视黄酸诱导的小鼠胚胎茎(ES)和畸胎癌(EC)细胞的比较研究。本研究确定了ES和EC细胞增殖活性,分化和致瘤潜力的差异。在未分化的ES细胞中发现纳米和MVH的纳米和MVH的较高表达以及Activin A和BMP4比EC细​​胞中的。然而,在视黄酸诱导的分化期间EC细胞中,活素A和BMP4的表达水平急剧增加。刺激激活素/节点和BMP信号传导级联和MEK / ERK和PI3K / ACT信号传导途径的抑制导致OCT4表达ES细胞数量的显着降低和致瘤性丧失,类似于视黄酸酐的EC细胞。因此,该研究表明,调节ES细胞中的生物引发和抗增殖信号传导的分化策略可以有效地消除致瘤细胞,并且可以代表安全干细胞治疗的有价值的工具。

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