在难以转染的HUVEC细胞中首次筛选siRNA文库。

Markus Zumbansen, Ludger M Altrogge, Nicole Ue Spottke, Sonja Spicker, Sheila M Offizier, Sandra Bs Domzalski, Allison L St Amand, Andrea Toell, Devin Leake, Herbert A Mueller-Hartmann
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摘要

有意义的基于rna的靶基因鉴定数据强烈依赖于生物相关细胞类型的使用和高功能siRNA试剂进入选定细胞类型的有效递送。在这里,我们报告使用Amaxa(R)核因子(R) 96孔穿梭(R)系统在原代细胞中筛选siRNA。用Thermo Scientific Dharmacon siGENOME(R) siRNA文库转染Lonza的克隆公司(R) huvec -人脐静脉内皮细胞,靶向蛋白激酶和细胞周期相关基因,并筛选对细胞活力重要的基因。在37个主要打击中,下调33个导致增殖减少或细胞死亡增加,而下调两个允许更好的细胞活力。在16个最强的初级命中基因中,经过验证的4个基因(COPB2、PYCS、CDK4和MYC)对细胞增殖有不同程度的影响,反映了对HUVEC细胞存活的不同重要性。我们的研究结果表明,核因子(R) 96孔穿梭(R)系统允许在以前被认为难以转染的细胞类型中递送siRNA文库。因此,基因靶标的鉴定和验证现在可以在原代细胞中进行,因为细胞类型的选择并不局限于脂质介导转染的细胞类型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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First siRNA library screening in hard-to-transfect HUVEC cells.

Meaningful RNAi-based data for target gene identification are strongly dependent on the use of a biologically relevant cell type and efficient delivery of highly functional siRNA reagents into the selected cell type. Here we report the use of the Amaxa(R) Nucleofector(R) 96-well Shuttle(R) System for siRNA screening in primary cells. Lonza's Clonetics(R) HUVEC-Human Umbilical Vein Endothelial Cells were transfected with Thermo Scientific Dharmacon siGENOME(R) siRNA Libraries targeting protein kinases and cell cycle related genes and screened for genes important for cell viability. Of the 37 primary hits, down-regulation of 33 led to reduced proliferation or increased cell death, while down-regulation of two allowed for better cell viability. The validated four genes out of the 16 strongest primary hits (COPB2, PYCS, CDK4 and MYC) influenced cell proliferation to varying degrees, reflecting differing importance for survival of HUVEC cells. Our results demonstrate that the Nucleofector(R) 96-well Shuttle(R) System allows the delivery of siRNA libraries in cell types previously considered to be difficult to transfect. Thus, identification and validation of gene targets can now be conducted in primary cells, as the selection of cell types is not limited to those accessible by lipid-mediated transfection.

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