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Subpopulations of Human Embryonic Stem Cells With Distinct Tissue-Specific Fates Can Be Selected From Pluripotent Cultures

机译:可以从多能培养物中选择具有不同组织特异性命运的人类胚胎干细胞亚群。

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摘要

Directed differentiation of human embryonic stem cells (hESCs) has generated much interest in the field of regenerative medicine. While subpopulations of hESCs within pluripotent cultures have been identified based on expression of specific surface antigens, their significance and fates are not well understood. To determine whether such subpopulations indicate specific tissue fates or represent stochastic antigen distributions within proliferating cultures, we isolated CD133+ or CD135+ hESCs from proliferating cultures constitutively expressing enhanced green fluorescent protein (GFP), and co-cultured these with unselected GFP hESCs. After passage in culture, GFP+ hESCs reanalyzed for the persistence of CD133 or CD135 expression, as well as other surface antigens (Tra-1-60, SSEA-4, FGFR-1), demonstrated that these two subpopulations continued to express CD133 or CD135 over serial passage, and that CD133+ hESCs were enriched for SSEA-4 expression as well. Upon differentiation in vitro, CD133+GFP+ hESCs gave rise solely to ectoderm, as detected by expression of nestin. Tissues representing endoderm (α-fetoprotein+) and mesoderm (smooth muscle actin+) were not seen among GFP+ tissues. In contrast, selection against CD133 gave rise almost exclusively to mesoderm and endoderm. In contrast, CD135+GFP+ hESCs gave rise to tissues representing all three embryonic germ layers, and were virtually indistinguishable from CD135-derived tissues. Similar results were obtained by in vivo differentiation in teratomas. These data establish that subpopulations of proliferating hESCs whose tissue fate is predetermined exist, and challenge the notion that all cells within proliferating hESC cultures are truly “pluripotent.” This co-culture approach also will enable identification of other distinct hESC subpopulations, and selection for these should prove valuable in generating tissue-specific reagents for cell-based therapy.
机译:人胚胎干细胞(hESCs)的定向分化引起了再生医学领域的极大兴趣。虽然已经根据特定表面抗原的表达鉴定了多能培养物中hESC的亚群,但它们的重要性和命运仍未得到很好的理解。为了确定此类亚群是否表明特定的组织命运或代表增殖培养物中的随机抗原分布,我们从组成性表达增强的绿色荧光蛋白的增殖培养物中分离了CD133 + 或CD135 + hESCs( GFP),并将其与未选择的GFP - hESCs共培养。经过培养后,GFP + hESCs重新分析了CD133或CD135表达以及其他表面抗原(Tra-1-60,SSEA-4,FGFR-1)的持久性,证明了这些在连续传代的过程中,两个亚群继续表达CD133或CD135,并且CD133 + hESC的SSEA-4表达也富集了。通过巢蛋白表达检测,体外分化后,CD133 + GFP + hESCs仅产生外胚层。在GFP + 组织中未见代表内胚层(α-胎蛋白 + )和中胚层(平滑肌肌动蛋白 + )的组织。相反,针对CD133的选择几乎只引起中胚层和内胚层的增加。相比之下,CD135 + GFP + hESCs产生了代表所有三个胚芽层的组织,并且与CD135 -来源的组织几乎没有区别。通过畸胎瘤的体内分化获得了相似的结果。这些数据证明存在组织命运已确定的增殖性hESC亚群,并挑战了增殖性hESC培养物中的所有细胞都是真正的“多能性”的观点。这种共培养方法还将能够鉴定其他不同的hESC亚群,对这些亚群的选择在产生用于细胞疗法的组织特异性试剂中应被证明是有价值的。

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