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首页> 外文期刊>Nucleic acids research >Electroporation enhances c-myc antisense oligodeoxynucleotide efficacy
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Electroporation enhances c-myc antisense oligodeoxynucleotide efficacy

机译:电穿孔增强c-myc反义寡脱氧核苷酸的功效

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Obtaining high transfection efficiencies and achieving appropriate intracellular concentrations and localization are two of the most important barriers to the implementation of gene targeted therapy. The efficiency of endogenous uptake of oligodeoxynucleo-tides (ODNs) varies from cell type to cell type and may be a limiting factor of antisense efficacy. The use of electroporation to obtain high intracellular concentrations of a synthetic ODN in essentially 100% of viable cells is described. It is also shown that the transfected ODNs initially localize to the nucleus and remain there for at least 48 hours. The cellular trafficking of electroporated ODNs is shown to be an energy dependent process. Targeting of the c-myc proto-oncogene of U937 cells by electroporation of phosphorothioate-modified ODNs results in rapid and specific suppression of this gene at ODN concentrations much lower than would otherwise be required. This technique appears to be applicable to a variety of cell types and may represent a powerful new investigative tool as well as a promising approach to the ex vivo treatment of hematologic disorders.
机译:获得高转染效率并获得适当的细胞内浓度和定位是实施基因靶向疗法的两个最重要的障碍。内源性寡聚脱氧核苷酸(ODN)的吸收效率因细胞类型而异,可能是反义功效的限制因素。描述了使用电穿孔在基本上100%的活细胞中获得高细胞内浓度的合成ODN的方法。还显示,转染的ODN最初定位于细胞核,并在细胞核中保留至少48小时。电穿孔的ODN的细胞运输被证明是能量依赖的过程。通过硫代磷酸酯修饰的ODN的电穿孔靶向U937细胞的c-myc原癌基因可导致该基因在ODN浓度下的快速和特异性抑制,远低于原本所需的浓度。这项技术似乎适用于多种细胞类型,可能代表了强大的新研究工具以及对血液系统疾病进行离体治疗的有前途的方法。

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