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Efficient delivery of C/EBP beta gene into human mesenchymal stem cells via polyethylenimine-coated gold nanoparticles enhances adipogenic differentiation

机译:通过聚乙烯亚胺包被的金纳米颗粒有效地将C / EBPβ基因传递到人间充质干细胞中增强成脂分化

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摘要

The controlled differentiation of stem cells via the delivery of specific genes encoding appropriate differentiation factors may provide useful models for regenerative medicine and aid in developing therapies for human patients. However, the majority of non-viral vectors are not efficient enough to manipulate difficult-to-transfect adult human stem cells in vitro. Herein, we report the first use of 25 kDa branched polyethylenimine-entrapped gold nanoparticles (AuPEINPs) and covalently bound polyethylenimine-gold nanoparticles (AuMUAPEINPs) as carriers for efficient gene delivery into human mesenchymal stem cells (hMSCs). We determined a functional application of these nanoparticles by transfecting hMSCs with the C/EBP beta gene, fused to EGFP, to induce adipogenic differentiation. Transfection efficacy with AuPEINPs and AuMUAPEINPs was 52.3% and 40.7%, respectively, which was 2.48 and 1.93 times higher than that by using Lipofectamine 2000. Luciferase assay results also demonstrated improved gene transfection efficiency of AuPEINPs/AuMUAPEINPs over Lipofectamine 2000 and polyethylenimine. Overexpression of exogenous C/EBP beta significantly enhanced adipogenesis in hMSCs as indicated by both of Oil Red O staining and mRNA expression analyses. Nanoparticle/DNA complexes exhibited favorable cytocompatibility in hMSCs. Taken together, AuPEINPs and AuMUAPEINPs potentially represent safe and highly efficient vehicles for gene delivery to control hMSC differentiation and for therapeutic gene delivery applications.
机译:通过递送编码适当分化因子的特定基因来控制干细胞分化,可以为再生医学提供有用的模型,并有助于开发针对人类患者的疗法。但是,大多数非病毒载体的效率不足以在体外操纵难以转染的成年人类干细胞。在这里,我们报告首次使用25 kDa的聚乙烯亚胺包裹的金纳米颗粒(AuPEINPs)和共价键合的聚乙烯亚胺金纳米颗粒(AuMUAPEINPs)作为载体有效地将基因传递到人间充质干细胞(hMSCs)。我们确定了通过与C / EBP beta基因,融合到EGFP,诱导成脂分化的hMSCs转染这些纳米颗粒的功能应用。 AuPEINPs和AuMUAPEINPs的转染效率分别为52.3%和40.7%,分别是使用Lipofectamine 2000的转染效率的2.48倍和1.93倍。荧光素酶检测结果还证明了AuPEINPs / AuMUAPEINPs的基因转染效率比Lipofectamine 2000和聚乙烯亚胺提高。如油红O染色和mRNA表达分析所示,外源C / EBPβ的过表达显着增强了hMSC中的脂肪生成。纳米颗粒/ DNA复合物在hMSC中显示出良好的细胞相容性。两者合计,AuPEINP和AuMUAPEINPs潜在地代表了安全高效的载体,可用于基因传递以控制hMSC分化和用于治疗性基因传递应用。

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