首页> 外文期刊>Journal of biomedical science. >Effects of siRNAs in combination with Gleevec on K-562 cell proliferation and Bcr-Abl expression.
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Effects of siRNAs in combination with Gleevec on K-562 cell proliferation and Bcr-Abl expression.

机译:siRNA联合格列卫对K-562细胞增殖和Bcr-Abl表达的影响。

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摘要

RNA interference (RNAi) is the repression of gene expression through a cellular mechanism of transcript-specific mRNA degradation. RNAi has been observed in human cells and applied to the modulation of a variety of human transcripts. Our goals were to deliver small interfering RNA (siRNA) using a liposome-based method, and to show Bcr-Abl siRNA specificity against K-562 cells, alone or in combination with Gleevec. Both synthetic (syn) siRNA, consisting of homogeneous 21-nucleotide-long RNA duplexes specific for the Bcr-Abl fusion site, and recombinant (r)-generated Bcr-Abl siRNA were employed. siRNA was transfected into K-562 cells with greater than 90% efficiency using RNAiFect, as judged by fluorescence analysis. The Bcr-Abl transcript was inhibited using either siRNA preparation as measured by RT-PCR or real-time PCR. The IC(50) of Gleevec in the K-562 subline F(1) was lowered over 3-fold from 0.2 to 0.06 muM in cells transfected with either syn or rBcr-Abl siRNA. No effect was observed in cells after transfection with an irrelevant control siRNA. Therefore, K-562 cells transfected with RNAifect deliver Bcr-Abl siRNA efficiently and the Bcr-Abl siRNA decreased the IC(50) of Gleevec required to inhibit the high levels of Bcr-Abl protein found in K-562 cells.
机译:RNA干扰(RNAi)是通过转录物特异性mRNA降解的细胞机制来抑制基因表达。已经在人细胞中观察到RNAi,并将其应用于多种人转录本的调节。我们的目标是使用基于脂质体的方法来递送小分子干扰RNA(siRNA),并展示针对K-562细胞的Bcr-Abl siRNA单独或与格列卫联合使用。都使用了合成的(syn)siRNA,它由对Bcr-Abl融合位点特异的均一的21个核苷酸长的RNA双链体组成,并使用了重组(r)生成的Bcr-Abl siRNA。通过荧光分析判断,使用RNAiFect将siRNA以90%以上的效率转染到K-562细胞中。使用通过RT-PCR或实时PCR测量的siRNA制备抑制Bcr-Abl转录本。在用syn或rBcr-Abl siRNA转染的细胞中,K-562亚系F(1)中的Gleevec的IC(50)从0.2到0.06μM降低了3倍以上。用无关的对照siRNA转染后在细胞中未观察到任何作用。因此,RNAifect转染的K-562细胞有效地传递Bcr-Abl siRNA,而Bcr-Abl siRNA降低了抑制在K-562细胞中发现高水平的Bcr-Abl蛋白所需的格列卫的IC(50)。

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