Teratoma formation in mice is today the most stringent test for pluripotency that is available for human pluripotent cells, as chimera formation and tetraploid complementation cannot be performed with human cells. The teratoma assay could also be applied for assessing the safety of human pluripotent cell-derived cell populations intended for therapeutic applications. In our study we examined the spontaneous differentiation behaviour of human embryonic stem cells (hESCs) in a perfused 3D multi-compartment bioreactor system and compared it with differentiation of hESCs and human induced pluripotent cells (hiPSCs) cultured in vitro as embryoid bodies and in vivo in an experimental mouse model of teratoma formation. Results from biochemical, histological/immunohistological and ultrastuctural analyses revealed that hESCs cultured in bioreactors formed tissue-like structures containing derivatives of all three germ layers. Comparison with embryoid bodies and the teratomas revealed a high degree of similarity of the tissues formed in the bioreactor to these in the teratomas at the histological as well as transcriptional level, as detected by comparative whole-genome RNA expression profiling. The 3D culture system represents a novel in vitro model that permits stable long-term cultivation, spontaneous multi-lineage differentiation and tissue formation of pluripotent cells that is comparable to in vivo differentiation. Such a model is of interest, e.g. for the development of novel cell differentiation strategies. In addition, the 3D in vitro model could be used for teratoma studies and pluripotency assays in a fully defined, controlled environment, alternatively to in vivo mouse models. Copyright (c) 2012 John Wiley & Sons, Ltd.
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机译:如今,小鼠的畸胎瘤形成是人类多能细胞可用的最严格的多能性测试,因为嵌合体形成和四倍体互补不能用人类细胞进行。畸胎瘤测定法还可用于评估打算用于治疗应用的人多能细胞来源的细胞群体的安全性。在我们的研究中,我们检查了人胚胎干细胞(hESCs)在灌注3D多隔室生物反应器系统中的自发分化行为,并将其与hESCs和体外培养为胚状体和体内培养的人诱导多能细胞(hiPSCs)的分化进行了比较。在畸胎瘤形成的实验小鼠模型中。生化,组织学/免疫组织学和超微结构分析的结果表明,在生物反应器中培养的hESCs形成了包含所有三个胚层衍生物的组织样结构。与胚状体和畸胎瘤的比较揭示了在生物反应器中形成的组织与畸胎瘤中的组织在组织学和转录水平上的高度相似性,这是通过比较全基因组RNA表达谱检测得出的。 3D培养系统代表了一种新颖的体外模型,该模型允许稳定的长期培养,自发的多谱系分化和与体内分化相当的多能细胞的组织形成。这样的模型是令人感兴趣的,例如。用于开发新型细胞分化策略。此外,3D体外模型可用于在完全限定的受控环境中进行畸胎瘤研究和多能性测定,以替代体内小鼠模型。版权所有(c)2012 John Wiley&Sons,Ltd.
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