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首页> 外文期刊>Stem cells and development >Human Transgene-Free Amniotic-Fluid-Derived Induced Pluripotent Stem Cells for Autologous Cell Therapy
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Human Transgene-Free Amniotic-Fluid-Derived Induced Pluripotent Stem Cells for Autologous Cell Therapy

机译:人类无转基因羊水衍生诱导多能干细胞用于自体细胞治疗

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摘要

The establishment of a reliable prenatal source of autologous, transgene-free progenitor cells has enormous potential in the development of regenerative-medicine-based therapies for infants born with devastating birth defects. Here, we show that a largely CD117-negative population of human amniotic fluid mesenchymal stromal cells (AF-MSCs) obtained from fetuses with or without prenatally diagnosed anomalies are readily abundant and have limited baseline differentiation potential when compared with bone-marrow-derived MSCs and other somatic cell types. Nonetheless, the AF-MSCs could be easily reprogrammed into induced pluripotent stem cells (iPSCs) using nonintegrating Sendai viral vectors encoding for OCT4, SOX2, KLF4, and cMYC. The iPSCs were virtually indistinguishable from human embryonic stem cells in multiple assays and could be used to generate a relatively homogeneous population of neural progenitors, expressing PAX6, SOX2, SOX3, Musashi-1, and PSA-NCAM, for potential use in neurologic diseases. Further, these neural progenitors showed engraftment potential in vivo and were capable of differentiating into mature neurons and astrocytes in vitro. This study demonstrates the usefulness of AF-MSCs as an excellent source for the generation of human transgene-free iPSCs ideally suited for autologous perinatal regenerative medicine applications.
机译:建立可靠的自体,无转基因祖细胞的产前来源,在开发具有破坏性出生缺陷的婴儿的基于再生医学的疗法方面具有巨大潜力。在这里,我们显示,与骨髓来源的MSC相比,从胎儿获得的有或没有产前诊断异常的CD117阴性的人羊水间充质基质细胞(AF-MSC)群体很容易获得并且基线分化潜能有限。和其他体细胞类型。尽管如此,使用编码OCT4,SOX2,KLF4和cMYC的非整合型仙台病毒载体,AF-MSC可以很容易地重编程为诱导多能干细胞(iPSC)。 iPSC在多种测定中几乎与人类胚胎干细胞没有区别,可用于产生相对同质的神经祖细胞群,表达PAX6,SOX2,SOX3,Musashi-1和PSA-NCAM,可用于神经系统疾病。此外,这些神经祖细胞在体内显示出植入潜力,并且能够在体外分化为成熟的神经元和星形胶质细胞。这项研究表明,AF-MSCs是产生无人转基因iPSCs的极好来源,非常适合自体围产期再生医学应用。

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