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Controlling Mesenchymal Stem Cell Gene Expression Using Polymer-Mediated Delivery of siRNA

机译:使用聚合物介导的siRNA控制间充质干细胞基因表达。

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siRNA treatment has great promise to specifically control gene expression and select cell behaviors but has delivery challenges limiting its use. Particularly for applications in regenerative medicine, uniform and consistent delivery of siRNA to control gene expression and subsequent stem cell functions, such as differentiation, is paramount. Therefore, a diblock copolymer was examined for its ability to effectively deliver siRNA to mesenchymal stem cells (MSCs). The diblock copolymers, which are composed of cationic blocks for siRNA complexation, protection, and uptake and pH-responsive blocks for endosomal escape, were shown to facilitate nearly 100% MSC uptake of siRNA. This is vastly superior to a commercially available control, DharmaFECT, which resulted in only ~60% siRNA positive MSCs. Moreover, the diblock copolymer, at conditions that result in excellent knockdown (down to ~10% of control gene expression), was cytocompatible, causing no negative effects on MSC survivability. In contrast, DharmaPECT/siRNA treatment resulted in only ~60% survivability of MSCs. Longitudinal knockdown after siRNA treatment was examined and protein knockdown persists for ~6 days regardless of delivery system (diblock copolymer or DharmaFECT). Finally, MSC phenotype and differentiation capacity was examined after treatment with control siRNA. There was no statistically significant differences on cell surface markers of diblock copolymer/siRNA or DharmaFECT/ siRNA-treated or cells measured 2 weeks after siRNA delivery compared to untreated cells. Upon differentiation with typical media/culture conditions to adipogenic, chondrogenic, and osteogenic lineages and examination of histological staining markers, there was no discernible differences between treated and untreated cells, regardless of delivery mechanism. Thus, diblock copolymers examined herein facilitated uniform siRNA treatment of MSCs, inducing siRNA-spedfic gene and protein knockdown without adversely affecting MSC survival or differentiation capacity and therefore show great promise for use within regenerative medicine applications.
机译:siRNA治疗具有特异性控制基因表达和选择细胞行为的巨大前景,但在递送方面存在挑战,限制了其使用。特别是对于再生医学的应用而言,均匀一致地传递siRNA以控制基因表达和随后的干细胞功能(例如分化)至关重要。因此,检查了二嵌段共聚物有效将siRNA递送至间充质干细胞(MSC)的能力。二嵌段共聚物由用于siRNA络合,保护和摄取的阳离子嵌段以及用于内体逸出的pH响应嵌段组成,可促进近100%的MSC摄取siRNA。这大大优于市售的对照品DharmaFECT,后者仅产生约60%的siRNA阳性MSC。而且,二嵌段共聚物在导致极好的敲除(低至对照基因表达的〜10%)的条件下具有细胞相容性,对MSC的存活率没有负面影响。相比之下,DharmaPECT / siRNA处理只能使MSC的存活率达到约60%。检验了siRNA处理后的纵向敲除,无论递送系统(二嵌段共聚物或DharmaFECT)如何,蛋白质敲除持续约6天。最后,在用对照siRNA处理后检查了MSC表型和分化能力。与未处理的细胞相比,用二嵌段共聚物/ siRNA或DharmaFECT / siRNA处理的细胞或在siRNA递送2周后测量的细胞的细胞表面标记没有统计学上的显着差异。在用典型的培养基/培养条件分化为成脂,成软骨和成骨谱系并检查组织学染色标记后,无论递送机制如何,在处理和未处理的细胞之间都没有可辨别的差异。因此,本文检查的二嵌段共聚物促进了MSC的均匀siRNA处理,诱导了siRNA-spedfic基因和蛋白敲低,而没有不利地影响MSC的存活或分化能力,因此显示出在再生医学应用中使用的巨大前景。

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