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Reactive oxygen species enhance differentiation of human embryonic stem cells into mesendodermal lineage

机译:活性氧增强人类胚胎干细胞向中胚层谱系的分化

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Recently, reactive oxygen species (ROS) have been studied as a regulator of differentiation into specific cell types in embryonic stem cells (ESCs). However, ROS role in human ESCs (hESCs) is unknown because mouse ESCs have been used mainly for most studies. Herein we suggest that ROS generation may play a critical role in differentiation of hESCs; ROS enhances differentiation of hESCs into bi-potent mesendodermal cell lineage via ROS-involved signaling pathways. In ROS-inducing conditions, expression of pluripotency markers (Oct4, Tra 1-60, Nanog, and Sox2) of hESCs was decreased, while expression of mesodermal and endodermal markers was increased. Moreover, these differentiation events of hESCs in ROS-inducing conditions were decreased by free radical scavenger treatment. hESC-derived embryoid bodies (EBs) also showed similar differentiation patterns by ROS induction. In ROS-related signaling pathway, some of the MAPKs family members in hESCs were also affected by ROS induction. p38 MAPK and AKT (protein kinases B, PKB) were inactivated significantly by buthionine sulfoximine (BSO) treatment. JNK and ERK phosphorylation levels were increased at early time of BSO treatment but not at late time point. Moreover, MAPKs family-specific inhibitors could prevent the mesendodermal differentiation of hESCs by ROS induction. Our results demonstrate that stemness and differentiation of hESCs can be regulated by environmental factors such as ROS.
机译:最近,已经研究了活性氧(ROS)作为胚胎干细胞(ESC)中分化为特定细胞类型的调节剂。但是,ROS在人ESC(hESC)中的作用尚不清楚,因为大多数研究中都使用了小鼠ESC。在这里,我们建议ROS的产生可能在hESCs的分化中起关键作用。 ROS通过ROS参与的信号通路增强hESCs向双能中胚层细胞谱系的分化。在ROS诱导条件下,hESCs的多能性标志物(Oct4,Tra 1-60,Nanog和Sox2)的表达减少,而中胚层和内胚层标志物的表达增加。此外,自由基清除剂处理减少了ROS诱导条件下hESC的这些分化事件。 hESC来源的胚状体(EBs)也通过ROS诱导显示出相似的分化模式。在ROS相关的信号通路中,hESCs中的一些MAPK家族成员也受到ROS诱导的影响。 p38 MAPK和AKT(蛋白激酶B,PKB)被丁硫氨酸亚砜亚胺(BSO)处理显着失活。在BSO处理的早期,JNK和ERK的磷酸化水平升高,但在晚期没有升高。此外,MAPKs家族特异性抑制剂可以通过ROS诱导阻止hESC的中胚层分化。我们的结果表明,hESCs的茎干和分化可以受环境因素(如ROS)调节。

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