首页> 美国卫生研究院文献>Cellular Reprogramming >Induction of Pluripotent Stem Cells from a Cynomolgus Monkey Using a Polycistronic Simian Immunodeficiency Virus–Based Vector Differentiation Toward Functional Cardiomyocytes and Generation of Stably Expressing Reporter Lines
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Induction of Pluripotent Stem Cells from a Cynomolgus Monkey Using a Polycistronic Simian Immunodeficiency Virus–Based Vector Differentiation Toward Functional Cardiomyocytes and Generation of Stably Expressing Reporter Lines

机译:诱导食蟹猴多能干细胞使用基于多顺反子猿免疫缺陷病毒的载体向功能性心肌细胞的分化以及稳定表达的报告基因系的产生

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摘要

Induced pluripotent stem cells (iPSCs) represent a novel cell source for regenerative therapies. Many emerging iPSC-based therapeutic concepts will require preclinical evaluation in suitable large animal models. Among the large animal species frequently used in preclinical efficacy and safety studies, macaques show the highest similarities to humans at physiological, cellular, and molecular levels. We have generated iPSCs from cynomolgus monkeys (Macaca fascicularis) as a segue to regenerative therapy model development in this species. Because typical human immunodeficiency virus type 1 (HIV-1)-based lentiviral vectors show poor transduction of simian cells, a simian immunodeficiency virus (SIV)-based vector was chosen for efficient transduction of cynomolgus skin fibroblasts. A corresponding polycistronic vector with codon-optimized reprogramming factors was constructed for reprogramming. Growth characteristics as well as cell and colony morphology of the resulting cynomolgus iPSCs (cyiPSCs) were demonstrated to be almost identical to cynomolgus embryonic stem cells (cyESCs), and cyiPSCs expressed typical pluripotency markers including OCT4, SOX2, and NANOG. Furthermore, differentiation in vivo and in vitro into derivatives of all three germ layers, as well as generation of functional cardiomyocytes, could be demonstrated. Finally, a highly efficient technique for generation of transgenic cyiPSC clones with stable reporter expression in undifferentiated cells as well as differentiated transgenic cyiPSC progeny was developed to enable cell tracking in recipient animals. In conclusion, our data indicate that cyiPSCs represent a valuable cell source for establishment of macaque-based allogeneic and autologous preclinical cell transplantation models for various fields of regenerative medicine.
机译:诱导多能干细胞(iPSC)代表了再生疗法的新型细胞来源。许多新兴的基于iPSC的治疗概念将需要在合适的大型动物模型中进行临床前评估。在临床前功效和安全性研究中经常使用的大型动物中,猕猴在生理,细胞和分子水平上与人类的相似性最高。我们已经从食蟹猴(Macaca fascicularis)生成了iPSC,作为该物种中再生疗法模型开发的一个线索。因为典型的基于人类1型免疫缺陷病毒(HIV-1)的慢病毒载体显示出对猿猴细胞的转导较差,所以选择基于猿猴免疫缺陷病毒(SIV)的载体对食蟹猴皮肤成纤维细胞进行有效转导。构建具有密码子优化的重编程因子的相应多顺反子载体用于重编程。食蟹猴iPSC(cyiPSC)的生长特征以及细胞和菌落形态被证明与食蟹猕猴胚胎干细胞(cyESCs)几乎相同,并且cyiPSC表达了典型的多能性标志物,包括OCT4,SOX2和NANOG。此外,可以证明体内和体外分化为所有三个胚层的衍生物,以及功能性心肌细胞的产生。最后,开发了一种高效的技术,用于在未分化细胞以及分化的转基因cyiPSC后代中生成具有稳定报告基因表达的转基因cyiPSC克隆,从而能够在受体动物中进行细胞追踪。总之,我们的数据表明cyiPSCs代表了宝贵的细胞来源,可用于为再生医学的各个领域建立基于猕猴的同种异体和自体临床前细胞移植模型。

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