Rohani L, Fabian C, Holland H, Naaldijk Y, Dressel R, Löffler-Wirth H, Binder H, Arnold A, Stolzing A
Fraunhofer Institute for Cell Therapy and Immunology, Leipzig, Germany; Translational Centre for Regenerative Medicine (TRM), University Leipzig, Germany.
Translational Centre for Regenerative Medicine (TRM), University Leipzig, Germany.
Stem Cell Res. 2016 May;16(3):662-72. doi: 10.1016/j.scr.2016.03.008. Epub 2016 Mar 23.
Here we describe some of the crucial steps to generate induced pluripotent stem cells (iPSCs) using mRNA transfection. Our approach uses a V. virus-derived capping enzyme instead of a cap-analog, ensuring 100% proper cap orientation for in vitro transcribed mRNA. V. virus' 2'-O-Methyltransferase enzyme creates a cap1 structure found in higher eukaryotes and has higher translation efficiency compared to other methods. Use of the polymeric transfection reagent polyethylenimine proved superior to other transfection methods. The mRNA created via this method did not trigger an intracellular immune response via human IFN-gamma (hIFN-γ) or alpha (hIFN-α) release, thus circumventing the use of suppressors. Resulting mRNA and protein were expressed at high levels for over 48h, thus obviating daily transfections. Using this method, we demonstrated swift activation of pluripotency associated genes in human fibroblasts. Low oxygen conditions further facilitated colony formation. Differentiation into different germ layers was confirmed via teratoma assay. Reprogramming with non-synthetic mRNA holds great promise for safe generation of iPSCs of human origin. Using the protocols described herein we hope to make this method more accessible to other groups as a fast, inexpensive, and non-viral reprogramming approach.
在此,我们描述了使用mRNA转染生成诱导多能干细胞(iPSC)的一些关键步骤。我们的方法使用源自V.病毒的加帽酶而非帽类似物,确保体外转录的mRNA具有100%正确的帽方向。V.病毒的2'-O-甲基转移酶可产生在高等真核生物中发现的帽1结构,与其他方法相比具有更高的翻译效率。事实证明,使用聚合物转染试剂聚乙烯亚胺优于其他转染方法。通过这种方法产生的mRNA不会通过人干扰素-γ(hIFN-γ)或α(hIFN-α)释放引发细胞内免疫反应,从而无需使用抑制剂。产生的mRNA和蛋白质高水平表达超过48小时,从而无需每日转染。使用这种方法,我们证明了人成纤维细胞中多能性相关基因的快速激活。低氧条件进一步促进了集落形成。通过畸胎瘤试验确认了向不同胚层的分化。使用非合成mRNA进行重编程对于安全生成人源iPSC具有巨大潜力。使用本文所述的方案,我们希望使其他研究团队更容易采用这种方法,将其作为一种快速、廉价且无病毒的重编程方法。