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Spatial and temporal expression pattern of germ layer markers during human embryonic stem cell differentiation in embryoid bodies

机译:胚状体中人胚胎干细胞分化过程中细菌层标记的时空表达模式

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Human embryonic stem cell (hESC) differentiation in embryoid bodies (EBs) provides a valuable tool to study the interplay of different germ layers and their influence on cell differentiation. The gene expression of the developing EBs has been shown in many studies, but the protein expression and the spatial composition of different germ layers in human EBs have not been systematically studied. The aim of the present work was to study the temporal and spatial organisation of germ layers based on the expression of mesoderm (Brachyury T), endoderm (AFP) and ectoderm (SOX1) markers during the early stages of differentiation in eight hESC lines. Tissue multi-array technology was applied to study the protein expression of a large number of EBs. According to our results, EB formation and the organisation of germ layers occurred in a similar manner in all the lines. During 12 days of differentiation, all the germ layer markers were present, but no obvious distinct trajectories were formed. However, older EBs were highly organised in structure. Pluripotency marker OCT3/4 expression persisted unexpectedly long in the differentiating EBs. Cavity formation was observed in the immunocytological sections, and caspase-3 expression was high, suggesting a role of apoptosis in hESC differentiation and/or EB formation. The expression of Brachyury T was notably low in all the lines, also those with the best cardiac differentiation capacity, while the expression of SOX1 was higher in some lines, suggesting that the neural differentiation propensity may be detectable already in the early stages of EB differentiation.
机译:人胚干细胞(hESC)在胚状体(EBs)中的分化提供了一种有价值的工具,可用于研究不同胚层之间的相互作用及其对细胞分化的影响。在许多研究中已显示出发育中的EB的基因表达,但尚未系统研究人类EB的蛋白质表达和不同细菌层的空间组成。本工作的目的是基于八个hESC系分化的早期中胚层(Brachyury T),内胚层(AFP)和外胚层(SOX1)标记的表达来研究胚层的时空组织。组织多阵列技术被用于研究大量EB的蛋白质表达。根据我们的结果,在所有系中,EB的形成和细菌层的组织都以类似的方式发生。在分化的12天中,所有细菌层标记均存在,但未形成明显的明显轨迹。但是,较旧的EB的结构高度组织。多能性标志物OCT3 / 4表达在分化的EB中意外地持续了很长时间。在免疫细胞学切片中观察到腔形成,并且caspase-3表达高,表明凋亡在hESC分化和/或EB形成中的作用。在所有系中,Brachyury T的表达均显着较低,在那些具有最佳心脏分化能力的系中也很低,而在某些系中,SOX1的表达则较高,这表明在EB分化的早期阶段就已经可以检测到神经分化倾向。 。

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