Stem Cell and Regenerative Medicine International, Worcester, Massachusetts, USA.
Stem Cells. 2010 Apr;28(4):704-12. doi: 10.1002/stem.321.
Human induced pluripotent stem cells (hiPSC) have been shown to differentiate into a variety of replacement cell types. Detailed evaluation and comparison with their human embryonic stem cell (hESC) counterparts is critical for assessment of their therapeutic potential. Using established methods, we demonstrate here that hiPSCs are capable of generating hemangioblasts/blast cells (BCs), endothelial cells, and hematopoietic cells with phenotypic and morphologic characteristics similar to those derived from hESCs, but with a dramatic decreased efficiency. Furthermore, in distinct contrast with the hESC derivatives, functional differences were observed in BCs derived from hiPSCs, including significantly increased apoptosis, severely limited growth and expansion capability, and a substantially decreased hematopoietic colony-forming capability. After further differentiation into erythroid cells, >1,000-fold difference in expansion capability was observed in hiPSC-BCs versus hESC-BCs. Although endothelial cells derived from hiPSCs were capable of taking up acetylated low-density lipoprotein and forming capillary-vascular-like structures on Matrigel, these cells also demonstrated early cellular senescence (most of the endothelial cells senesced after one passage). Similarly, retinal pigmented epithelium cells derived from hiPSCs began senescing in the first passage. Before clinical application, it will be necessary to determine the cause and extent of such abnormalities and whether they also occur in hiPSCs generated using different reprogramming methods.
人诱导多能干细胞(hiPSC)已被证明可分化为多种替代细胞类型。详细评估并与人类胚胎干细胞(hESC)进行比较对于评估其治疗潜力至关重要。我们在这里使用已建立的方法证明,hiPSC 能够产生具有与 hESC 衍生细胞相似的表型和形态特征的成血管细胞/成胚细胞(BC)、内皮细胞和造血细胞,但效率显著降低。此外,与 hESC 衍生物形成鲜明对比的是,hiPSC 衍生的 BC 中观察到功能差异,包括明显增加的细胞凋亡、严重限制的生长和扩增能力,以及造血集落形成能力大大降低。进一步分化为红细胞后,hiPSC-BC 与 hESC-BC 在扩增能力方面存在 1000 倍以上的差异。尽管源自 hiPSC 的内皮细胞能够摄取乙酰化低密度脂蛋白并在 Matrigel 上形成毛细血管样结构,但这些细胞也表现出早期细胞衰老(大多数内皮细胞在传代后衰老)。同样,源自 hiPSC 的视网膜色素上皮细胞在第一代就开始衰老。在临床应用之前,有必要确定这种异常的原因和程度,以及它们是否也存在于使用不同重编程方法产生的 hiPSC 中。