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首页> 外文期刊>The journal of gene medicine >Nonviral genetic modification mediates effective transgene expression and functional RNA interference in human mesenchymal stem cells
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Nonviral genetic modification mediates effective transgene expression and functional RNA interference in human mesenchymal stem cells

机译:非病毒基因修饰介导人间充质干细胞中有效的转基因表达和功能性RNA干扰

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摘要

Background Human mesenchymal stem cells (hMSC) are increasingly the focus of both basic and clinical research due to their ability to strike a balance between self-renewal and commitment to mesodermal differentiation. However, the promising therapeutic utility of hMSC in regenerative medical approaches requires detailed knowledge about their molecular characteristics. Therefore, genetic modification of hMSC provides a powerful tool to understand their complex molecular regulation mechanisms.Methods Here we describe a proof of concept approach of separate and combined gene transfer and gene silencing by nonviral DNA transfection of enhanced green fluorescent protein (EGFP) and EGFP-targeted small interfering RNAs (siRNAs) in hMSC. For optimization of nonviral DNA and siRNA transfer different liposomal-based transfection strategies were validated.Results The highest fraction of EGFP-expressing hMSC was obtained using Lipofectamine 2000 (50%) which also mediated the highest transfection rates of siRNAs into hMSC (>= 92%). Stably EGFP-expressing hMSC maintained their proliferation capacity paired with the ability to differentiate into different mesodermal lineages (bone, cartilage, and fat) without loss of transgene expression. Based on our nonviral nucleic acid delivery technique we showed efficient, functional, and long-term RNA interference (RNAi) in hMSC by gene specific knock-down of transiently and stably expressed EGFP (88-98%).Conclusions This is the first demonstration of efficient nonviral transfer of both nucleic acids (DNA and siRNA) into hMSC, exhibiting the potential of targeted modification of hMSC. In particular, the combination of these techniques represents a powerful gene transfer/silencing strategy, thus facilitating detailed genetic approaches to study regulatory networks in stem cell differentiation processes. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:背景技术人间充质干细胞(hMSC)能够在自我更新和对中胚层分化的承诺之间取得平衡,因此越来越成为基础研究和临床研究的重点。然而,hMSC在再生医学方法中的有希望的治疗用途需要有关其分子特征的详细知识。因此,hMSC的遗传修饰为了解其复杂的分子调控机制提供了有力的工具。方法在这里,我们描述了通过增强型绿色荧光蛋白(EGFP)和EGFP的非病毒DNA转染分离和组合的基因转移和基因沉默的概念方法的证明。 hMSC中的靶向性小干扰RNA(siRNA)。为了优化非病毒DNA和siRNA的转移,验证了不同的基于脂质体的转染策略。结果使用Lipofectamine 2000(50%)获得了表达EGFP的hMSC的最高部分,它也介导了siRNA进入hMSC的最高转染率(> = 92) %)。稳定表达EGFP的hMSC保持了其增殖能力,并具有分化成不同的中胚层谱系(骨骼,软骨和脂肪)的能力,而不会丢失转基因表达。基于我们的非病毒核酸递送技术,我们通过瞬时稳定表达EGFP(88-98%)的基因特异性敲除,在hMSC中显示出有效,功能和长期的RNA干扰(RNAi)。结论这是首次演示两种核酸(DNA和siRNA)有效非病毒转移到hMSC中的研究,展示了hMSC靶向修饰的潜力。特别是,这些技术的结合代表了一种强大的基因转移/沉默策略,从而促进了详细的遗传学方法来研究干细胞分化过程中的调控网络。版权所有(c)2005 John Wiley&Sons,Ltd.

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