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Efficient generation of transgene- and feeder-free induced pluripotent stem cells from human dental mesenchymal stem cells and their chemically defined differentiation into cardiomyocytes

机译:有效地产生 transgene- 和 无饲养层 的 诱导多能干细胞 从 人牙 的间充质 干 细胞和它们的 化学成分确定的 分化为心肌

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Abstract Advance in stem cell research resulted in several processes to generate induced pluripotent stem cells (iPSCs) from adult somatic cells. In our previous study, the reprogramming of iPSCs from human dental mesenchymal stem cells (MSCs) including SCAP and DPSCs, has been reported. Herein, safe iPSCs were reprogrammed from SCAP and DPSCs using non-integrating RNA virus vector, which is an RNA virus carrying no risk of altering host genome. DPSCs- and SCAP-derived iPSCs exhibited the characteristics of the classical morphology with human embryonic stem cells (hESCs) without integration of foreign genes, indicating the potential of their clinical application. Moreover, induced PSCs showed the capacity of self-renewal and differentiation into cardiac myocytes. We have achieved the differentiation of hiPSCs to cardiomyocytes lineage under serum and feeder-free conditions, using a chemically defined medium CDM3. In CDM3, hiPSCs differentiation is highly generating cardiomyocytes. The results showed this protocol produced contractile sheets of up to 97.2% TNNT2 cardiomyocytes after purification. Furthermore, derived hiPSCs differentiated to mature cells of the three embryonic germ layers in vivo and in vitro of beating cardiomyocytes. The above whole protocol enables the generation of large scale of highly pure cardiomyocytes as needed for cellular therapy. Highlights ? Safe iPSCs were reprogrammed from the SCAP and DPSCs using non-integrating RNA virus vector. ? RNA virus vector is an RNA virus with carrying no risk of altering host genome. ? Cardiomyocytes highly generated by hiPSCs differentiation showed contractile sheets of up to 97.2% TNNT2 after purification. ? Derived hiPSCs differentiated to mature cells of three embryonic germ layers in vivo and in vitro of beating cardiomyocytes.
机译:摘要在干细胞的研究进展导致几种方法从成年体细胞产生诱导的多能干细胞(IPSC)。在我们以前的研究中,已经报道了来自人类牙科间充质干细胞(MSC)的IPSC的重新编程,包括SCAP和DPSCS。在此,使用非整合RNA病毒载体从SCAP和DPSCS重新编程安全IPSC,其是携带没有改变宿主基因组风险的RNA病毒。 DPSCS和SCAP衍生的IPSCS表现出具有人胚胎干细胞(HESC)的经典形态的特征,而无需纳入外源基因,表明其临床应用的潜力。此外,诱导的PSC显示出自我更新和分化成心肌细胞的能力。使用化学定义的培养基CDM3,我们已经达到了HIPSCS在无血清和无饲养条件下的心肌细胞谱系的分化。在CDM3中,HIPSCS分化是高产生的心肌细胞。结果表明,该方案在纯化后产生了高达97.2%TNNT2心肌细胞的收缩片。此外,衍生的HIPSC分化为在体内和搅拌心肌细胞的体内和体外的三个胚胎胚层的成熟细胞中。上述整个协议使得能够根据需要产生大规模的高度纯度的心肌细胞以进行细胞疗法。强调 ?使用非整合RNA病毒向量,安全IPSCS从SCAP和DPSC重新编程。还RNA病毒载体是一种RNA病毒,其携带没有改变宿主基因组的风险。还HIPSCS分化高度产生的心肌细胞显示在纯化后显示出高达97.2%TNNT2的收缩片。还衍生的HIPSCs在体内和在击打心肌细胞的体外分化为三个胚胎胚层的成熟细胞。

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