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Comparison of small interfering RNA (siRNA) delivery into bovine monocyte-derived macrophages by transfection and electroporation

机译:通过转染和电穿孔将小干扰RNa(siRNa)递送到牛单核细胞衍生的巨噬细胞中的比较

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摘要

The manipulation of the RNA interference pathway using small interfering RNA (siRNA) has become the most frequently used gene silencing method. However, siRNA delivery into primary cells, especially primary macrophages, is often considered challenging. Here we report the investigation of the suitability of two methodologies: transient transfection and electroporation, to deliver siRNA targeted against the putative immunomodulatory gene Mediterranean Fever (MEFV) into primary bovine monocyte-derived macrophages (bMDM). Eleven commerical transfection reagents were investigated with variable results with respect to siRNA uptake, target gene knock-down, cell toxicity and type I interferon (IFN) response induction. Three transfection reagents; Lipofectamine 2000, Lipofectamine RNAiMAX and DharmaFECT 3, were found to consistently give the best results. However, all the transfection reagents tested induced an IFN response in the absence of siRNA, which could be minimized by reducing the transfection reagent incubation period. In addition, optimized siRNA delivery into bMDM by electroporation achieved comparable levels of target gene knock-down as transient transfection, without a detectable IFN response, but with higher levels of cell toxicity. The optimized transient transfection and electroporation methodologies may provide a starting point for optimizing siRNA delivery into macrophages derived from other species or other cells considered difficult to investigate with siRNA.
机译:使用小干扰RNA(siRNA)操纵RNA干扰途径已成为最常用的基因沉默方法。但是,通常认为将siRNA递送到原代细胞,特别是原代巨噬细胞中具有挑战性。在这里,我们报告对两种方法的适用性的调查:瞬时转染和电穿孔,以将针对推定的免疫调节基因地中海热(MEFV)的siRNA转运至原发于牛单核细胞的巨噬细胞(bMDM)中。对11种商业转染试剂进行了研究,结果涉及siRNA摄取,靶基因敲低,细胞毒性和I型干扰素(IFN)反应诱导。三种转染试剂;发现Lipofectamine 2000,Lipofectamine RNAiMAX和DharmaFECT 3始终提供最佳结果。但是,所有测试的转染试剂在不存在siRNA的情况下均会诱导IFN反应,可通过缩短转染试剂的孵育时间来将其最小化。此外,通过电穿孔优化的siRNA递送至bMDM的靶基因敲除水平与瞬时转染相当,没有可检测的IFN反应,但细胞毒性较高。优化的瞬时转染和电穿孔方法学可以为优化siRNA递送至源自其他物种或认为难以用siRNA研究的其他细胞的巨噬细胞提供起点。

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