首页> 外文期刊>Journal of cellular and molecular medicine. >mRNA-mediated gene delivery into human progenitor cells promotes highly efficient protein expression.
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mRNA-mediated gene delivery into human progenitor cells promotes highly efficient protein expression.

机译:mRNA介导的基因传递到人类祖细胞中促进了高效蛋白质表达。

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Gene transfer into human CD34+ haematopoietic progenitor cells (HPC) and multi-potent mesenchymal stromal cells (MSC) is an essential tool for numerous in vitro and in vivo applications including therapeutic strategies, such as tissue engineering and gene therapy. Virus based methods may be efficient, but bear risks like tumorigenesis and activation of immune responses. A safer alternative is non-viral gene transfer, which is considered to be less efficient and accomplished with high cell toxicity. The truncated low affinity nerve growth factor receptor (ALNGFR) is a marker gene approved for human in vivo application. Human CD34+ HPC and human MSC were transfected with in vitro-transcribed mRNA for DeltaLNGFR using the method of nucleofection. Transfection efficiency and cell viability were compared to plasmid-based nucleofection. Protein expression was assessed using flow cytometry over a time period of 10 days. Nucleofection of CD34+ HPC and MSC with mRNA resulted in significantly higher transfection efficiencies compared to plasmid transfection. Cell differentiation assays were performed after selecting DeltaLNGFR positive cells using a fluorescent activating cell sorter. Neither cell differentiation of MSC into chondrocytes, adipocytes and osteoblasts, nor differentiation of HPC into burst forming unit erythroid (BFU-E) colony forming unit-granulocyte, erythrocyte, macrophage and megakaryocyte (CFU-GEMM), and CFU-granulocyte-macrophage (GM) was reduced. mRNA based nucleofection is a powerful, highly efficient and non-toxic approach for transient labelling of human progenitor cells or, via transfection of selective proteins, for transient manipulation of stem cell function. It may be useful to transiently manipulate stem cell characteristics and thus combine principles of gene therapy and tissue engineering.
机译:基因转移到人CD34 +造血祖细胞(HPC)和多能间充质基质细胞(MSC)中是许多体外和体内应用(包括治疗策略,例如组织工程和基因治疗)的重要工具。基于病毒的方法可能是有效的,但具有诸如肿瘤发生和免疫应答激活等风险。一种更安全的选择是非病毒基因转移,它被认为效率低下并且具有很高的细胞毒性。截短的低亲和力神经生长因子受体(ALNGFR)是批准用于人类体内应用的标记基因。使用核转染方法,用DeltaLNGFR的体外转录mRNA转染人CD34 + HPC和人MSC。将转染效率和细胞活力与基于质粒的核转染进行了比较。使用流式细胞仪在10天的时间内评估蛋白质表达。与质粒转染相比,CD34 + HPC和MSC用mRNA进行核转染可显着提高转染效率。使用荧光激活细胞分选仪选择DeltaLNGFR阳性细胞后,进行细胞分化测定。既不将MSC的细胞分化为软骨细胞,脂肪细胞和成骨细胞,也不将HPC分化为爆发形成单位红系(BFU-E)集落,形成单位粒细胞,红细胞,巨噬细胞和巨核细胞(CFU-GEMM),以及CFU粒细胞巨噬细胞( GM)减少了。基于mRNA的核转染是一种强大,高效且无毒的方法,可瞬时标记人祖细胞,或通过选择性蛋白的转染,瞬时控制干细胞功能。短暂地操纵干细胞特征并因此结合基因治疗和组织工程学原理可能是有用的。

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