Arami Sanam, Mahdavi Majid, Rashidi Mohammad-Reza, Yekta Reza, Rahnamay Mohammad, Molavi Leila, Hejazi Mohammad-Saeid, Samadi Nasser
Pharmaceutical Biotechnology Department, Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran; Research Center for Pharmaceutical Nanotechnology, Tabriz University of Medical Sciences, Tabriz, Iran.
Department of Biology, Faculty of Natural Sciences, University of Tabriz, Tabriz, Iran.
J Pharm Biomed Anal. 2017 Aug 5;142:145-154. doi: 10.1016/j.jpba.2017.04.025. Epub 2017 May 6.
Delivery of small interfering RNAs (siRNAs) into cells still remains a challenge in gene delivery studies. Here, we investigated the ability of synthesized FeO-PEG-LAC-chitosan-PEI nanoparticles for siRNA delivery of survivin as the model gene into cells. The cellular uptake of survivin siRNA carried by synthesized nanoparticles into MCF-7 breast cancer cell line was evaluated by florescent microscopy and flowcytometry, both proving the efficacy of nanoparticles in delivery of up to 64.7% in comparison with lipofectamine 2000. Furthermore, the delivery of survivin siRNA by the nanoparticles (nanoplex) induced apoptosis that was assessed through DAPI staining and Annexin V/PI assays. In addition, we evaluated the efficacy of treatment with nanoplexes in the presence of mitoxantrone, as a chemotherapeutic agent. Our data indicated that inhibition of survivin expression increased the cell sensitivity to mitoxantrone. Real-time PCR and western blotting analysis revealed a significant reduction in mRNA and protein levels of survivin upon delivery of siRNA. Molecular docking studies showed that nanoparticles can bind to centeral BIR domain of survivin, exactly above zinc ion location with high affinity (ΔG: -10.3Kcal/mol). Also, thermodynamic studies proved the experimental results theoretically, revealing that the siRNA-loaded nanoparticles have a suppressing effect on survivin mRNA. Therefore, delivery of survivin siRNA into MCF-7 cells using FeO-PEG-LAC-chitosan-PEI nanoparticles as a carrier enhances the cell death.
在基因递送研究中,将小干扰RNA(siRNAs)递送至细胞仍然是一项挑战。在此,我们研究了合成的FeO-PEG-LAC-壳聚糖-聚乙烯亚胺纳米颗粒作为模型基因survivin的siRNA递送至细胞的能力。通过荧光显微镜和流式细胞术评估了合成纳米颗粒携带的survivin siRNA对MCF-7乳腺癌细胞系的细胞摄取情况,两者均证明纳米颗粒递送的有效性,与脂质体2000相比,递送效率高达64.7%。此外,纳米颗粒(纳米复合物)递送survivin siRNA诱导了细胞凋亡,这通过DAPI染色和膜联蛋白V/碘化丙啶检测进行评估。此外,我们评估了在存在化疗药物米托蒽醌的情况下纳米复合物治疗的效果。我们的数据表明,抑制survivin表达增加了细胞对米托蒽醌的敏感性。实时PCR和蛋白质印迹分析显示,递送siRNA后survivin的mRNA和蛋白质水平显著降低。分子对接研究表明,纳米颗粒可以与survivin的中央BIR结构域结合,正好位于锌离子位置上方,具有高亲和力(ΔG:-10.3千卡/摩尔)。此外,热力学研究从理论上证明了实验结果,表示负载siRNA的纳米颗粒对survivin mRNA具有抑制作用。因此,使用FeO-PEG-LAC-壳聚糖-聚乙烯亚胺纳米颗粒作为载体将survivin siRNA递送至MCF-7细胞可增强细胞死亡。