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EpCAM aptamer mediated cancer cell specific delivery of EpCAM siRNA using polymeric nanocomplex

机译:使用聚合纳米复合物的EpCAM适体介导的EpCAM siRNA癌细胞的特异性递送

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摘要

BACKGROUND: Epithelial cell adhesion molecule (EpCAM) is overexpressed in solid tumors and regarded as a putative cancer stem cell marker. Here, we report that employing EpCAM aptamer (EpApt) and EpCAM siRNA (SiEp) dual approach, for the targeted delivery of siRNA to EpCAM positive cancer cells, efficiently inhibits cancer cell proliferation. RESULTS: Targeted delivery of siRNA using polyethyleneimine is one of the efficient methods for gene delivery, and thus, we developed a novel aptamer-PEI-siRNA nanocomplex for EpCAM targeting. PEI nanocomplex synthesized with EpCAM aptamer (EpApt) and EpCAM siRNA (SiEp) showed 198 nm diameter sized particles by dynamic light scattering, spherical shaped particles, of 151 ± 11 nm size by TEM. The surface charge of the nanoparticles was -30.0 mV using zeta potential measurements. Gel retardation assay confirmed the PEI-EpApt-SiEp nanoparticles formation. The difference in size observed by DLS and TEM could be due to coating of aptamer and siRNA on PEI nanocore. Flow cytometry analysis revealed that PEI-EpApt-SiEp has superior binding to cancer cells compared to EpApt or scramble aptamer (ScrApt) or PEI-ScrApt-SiEp. PEI-EpApt-SiEp downregulated EpCAM and inhibited selectively the cell proliferation of MCF-7 and WERI-Rb1 cells. CONCLUSIONS: The PEI nanocomplex fabricated with EpApt and siEp was able to target EpCAM tumor cells, deliver the siRNA and silence the target gene. This nanocomplex exhibited decreased cell proliferation than the scrambled aptamer loaded nanocomplex in the EpCAM expressing cancer cells and may have potential for EpCAM targeting in vivo.
机译:背景:上皮细胞粘附分子(EpCAM)在实体瘤中过表达,被认为是癌症干细胞的标志物。在这里,我们报告说采用EpCAM适体(EpApt)和EpCAM siRNA(SiEp)双重方法,将siRNA靶向递送至EpCAM阳性癌细胞,可有效抑制癌细胞增殖。结果:使用聚乙烯亚胺靶向递送siRNA是有效的基因递送方法之一,因此,我们开发了一种新型的适体-PEI-siRNA纳米复合物用于EpCAM靶向。用EpCAM适体(EpApt)和EpCAM siRNA(SiEp)合成的PEI纳米复合物通过动态光散射显示198 nm直径大小的颗粒,球形颗粒,通过TEM观察为151±11 nm。使用zeta电势测量,纳米粒子的表面电荷为-30.0 mV。凝胶阻滞分析证实了PEI-EpApt-SiEp纳米颗粒的形成。 DLS和TEM观察到的大小差异可能是由于在PEI纳米核上包被了适体和siRNA。流式细胞仪分析表明,与EpApt或加扰适体(ScrApt)或PEI-ScrApt-SiEp相比,PEI-EpApt-SiEp与癌细胞具有更好的结合力。 PEI-EpApt-SiEp下调EpCAM并选择性抑制MCF-7和WERI-Rb1细胞的细胞增殖。结论:用EpApt和siEp制备的PEI纳米复合物能够靶向EpCAM肿瘤细胞,递送siRNA并沉默靶基因。该纳米复合物比表达EpCAM的癌细胞中加扰的适体纳米复合物表现出降低的细胞增殖,并且可能具有体内靶向EpCAM的潜力。

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