人胎儿内皮细胞中内源性 KLF4 的表达允许仅通过 OCT3/4 和 SOX2 进行重编程为多能性——简短报告。

Endogenous KLF4 expression in human fetal endothelial cells allows for reprogramming to pluripotency with just OCT3/4 and SOX2--brief report.

机构信息

Institute of Cellular and System Medicine, National Health Research Institutes, Zhunan, Taiwan.

出版信息

Arterioscler Thromb Vasc Biol. 2010 Oct;30(10):1905-7. doi: 10.1161/ATVBAHA.110.206540. Epub 2010 Aug 5.

Abstract

OBJECTIVE

The introduction of 4 transcription factors-c-MYC, OCT3/4, SOX2, and KLF4--can reprogram somatic cells back to pluripotency. However, some of the factors used are oncogenic, making therapeutic application unfeasible. Although the use of adult stem cells expressing high endogenous levels of some of these factors allows for reprogramming with fewer exogenous genes, such cells are rare and may have accumulated genetic mutations. Our goal was to reprogram human somatic cells without oncogenic factors. We found that high endogenous expression of KLF4 in human umbilical vein endothelial cells (HUVECs) allows for generation of induced pluripotent stem cells (iPSCs) with just 2 nononcogenic factors, OCT3/4 and SOX2.

METHODS AND RESULTS

HUVECs were infected with lentivirus containing OCT4 and SOX2 for generation of iPSCs. These 2-factor HUVEC iPSCs were morphologically similar to embryonic stem cells, express endogenous pluripotency markers postreprogramming, and can differentiate toward lineages of all 3 germ layers both in vitro and in vivo.

CONCLUSIONS

iPSCs can be generated from HUVECs with only 2 nononcogenic factors. The use of fetal cells for reprogramming without oncogenic factors may provide an efficient in vitro model for human iPSC research, as well as a novel source for possible therapeutic use.

摘要

目的

引入 4 种转录因子——c-MYC、OCT3/4、SOX2 和 KLF4——可以将体细胞重编程为多能性。然而,使用的一些因子是致癌的,使得治疗应用变得不可行。尽管使用高表达内源性这些因子的成体干细胞可以用较少的外源性基因进行重编程,但这种细胞很少,并且可能已经积累了遗传突变。我们的目标是在没有致癌因子的情况下重编程人体细胞。我们发现,人脐静脉内皮细胞(HUVEC)中 KLF4 的高内源性表达允许仅用 2 种非致癌因子(OCT3/4 和 SOX2)生成诱导多能干细胞(iPSC)。

方法和结果

HUVEC 被感染含有 OCT4 和 SOX2 的慢病毒以生成 iPSC。这些 2 因子 HUVEC iPSC 在形态上类似于胚胎干细胞,在重编程后表达内源性多能性标志物,并可在体外和体内向 3 个胚层的谱系分化。

结论

仅用 2 种非致癌因子即可从 HUVEC 生成 iPSC。使用无致癌因子的胎儿细胞进行重编程可能为人类 iPSC 研究提供一种有效的体外模型,以及一种可能的治疗用途的新来源。

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