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Fast and Efficient Multitransgenic Modification of Human Pluripotent Stem Cells

机译:人多能干细胞的快速和高效的多转基因修饰。

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摘要

Human pluripotent stem cells (hPSCs) represent a prime cell source for pharmacological research and regenerative therapies because of their extensive expansion potential and their ability to differentiate into essentially all somatic lineages in vitro. Improved methods to stably introduce multiple transgenes into hPSCs will promote, for example, their preclinical testing by facilitating lineage differentiation and purification in vitro and the subsequent in vivo monitoring of respective progenies after their transplantation into relevant animal models. To date, the establishment of stable transgenic hPSC lines is still laborious and time-consuming. Current limitations include the low transfection efficiency of hPSCs via nonviral methods, the inefficient recovery of genetically engineered clones, and the silencing of transgene expression. Here we describe a fast, electroporation-based method for the generation of multitransgenic hPSC lines by overcoming the need for any preadaptation of conventional hPSC cultures to feeder-free conditions before genetic manipulation. We further show that the selection for a single antibiotic resistance marker encoded on one plasmid allowed for the stable genomic (co-)integration of up to two additional, independent expression plasmids. The method thereby enables the straightforward, nonviral generation of valuable multitransgenic hPSC lines in a single step. Practical applicability of the method is demonstrated for antibiotic-based lineage enrichment in vitro and for sodium iodide symporter transgene-based in situ cell imaging after intramyocardial cell infusion into explanted pig hearts.
机译:人多能干细胞(hPSC)代表了药理研究和再生疗法的主要细胞来源,因为它们具有广泛的扩增潜力,并且能够在体外分化为基本上所有的体细胞谱系。稳定地将多个转基因引入hPSC的改进方法将促进其临床前测试,例如,通过促进体外谱系的分化和纯化以及随后将各自的子代移植到相关动物模型中进行体内监测来促进它们的临床前测试。迄今为止,建立稳定的转基因hPSC品系仍然费力且费时。当前的局限性包括hPSC通过非病毒方法的低转染效率,基因工程克隆的回收效率低以及转基因表达沉默。在这里,我们描述了一种通过基于电穿孔的快速电穿孔方法来产生多转基因hPSC系的方法,该方法克服了对传统hPSC培养物在基因操作之前无饲养层条件的任何预适应的需求。我们进一步表明,对在一个质粒上编码的单个抗生素抗性标记的选择允许多达两个其他独立表达质粒的稳定基因组(共)整合。该方法由此使得能够在单个步骤中直接,非病毒地产生有价值的多转基因hPSC系。证明了该方法的实用性,适用于体外基于抗生素的谱系富集以及心肌细胞向植入的猪心脏中输注后基于碘化钠转运蛋白转基因的原位细胞成像。

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