BioMediTech, University of Tampere, 33014, Tampere, Finland.
Department of Pharmacological and Biomolecular Sciences, Università degli Studi di Milano, Milan, Italy.
Stem Cell Rev Rep. 2015 Dec;11(6):900-8. doi: 10.1007/s12015-015-9619-3.
Induced pluripotent stem cells (iPSCs) are routinely produced from dermal fibroblasts, with potential applications ranging from in vitro disease models to drug discovery and regenerative medicine. The need of eliminating the remaining reprogramming factors after iPSC production spurred the development of non-integrating viruses such as Sendai and other methods to deliver episomal vectors, which are progressively lost upon cell division. We compared four widespread methods (Sendai virus, Nucleofector, Neon transfection system and Lipofectamine 3000) to generate integration-free iPSC lines from primary human dermal fibroblasts (hDF) of three patients. Furthermore, we performed extensive characterization of the iPSC lines. We were able to produce iPSC lines with all tested methods with variable efficiency. Sendai virus method achieved the overall highest reprogramming rate, followed by electroporation-based methods Nucleofector and Neon transfection systems. Chemical-based Lipofectamine 3000 delivery resulted in the lowest number of iPSC colonies. We found the reprogramming rate to be intrinsically dependent on the individual hDFs but the amenability of each hDF to reprogramming showed consistency between methods. Regardless of the reprogramming strategy, iPSCs obtained did not reveal any significant differences in their morphology, expression of pluripotency markers, EB formation, karyotype or gene expression profiles.
诱导多能干细胞(iPSC)通常从皮肤成纤维细胞中产生,其潜在应用范围从体外疾病模型到药物发现和再生医学。在产生 iPSC 后消除剩余重编程因子的需求促使开发了非整合病毒,如 Sendai 病毒和其他传递附加体载体的方法,这些方法在细胞分裂时会逐渐丢失。我们比较了四种广泛使用的方法(Sendai 病毒、Nucleofector、Neon 转染系统和 Lipofectamine 3000),以从三位患者的原代人皮肤成纤维细胞(hDF)中生成无整合的 iPSC 系。此外,我们对 iPSC 系进行了广泛的表征。我们能够使用所有测试方法以不同的效率产生 iPSC 系。Sendai 病毒法的总体重编程效率最高,其次是基于电穿孔的 Nucleofector 和 Neon 转染系统。基于化学的 Lipofectamine 3000 递送导致 iPSC 集落数量最少。我们发现重编程效率本质上取决于个体 hDF,但每个 hDF 对重编程的易感性在方法之间具有一致性。无论采用哪种重编程策略,获得的 iPSC 在形态、多能性标志物的表达、EB 形成、核型或基因表达谱方面均无明显差异。