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EFFECTS OF CARBOXYMETHLY DEXTRAN MAGNETIC NANOPARTICLES CARRIER SYSTEM ASSOCIATED WITH EXTERNAL MAGNETIC FIELDS ON KILLING TUMOR CELLS AND GENE TRANSFECTION

机译:外部磁场与羧甲基右旋糖酐纳米粒子载体系统对肿瘤细胞杀灭及基因翻译的影响

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Objective: To investigate the preparation of the carboxymethly dextran iron oxide magnetic nanoparticles (CDMN) and the effects of CDMN carrier system associated with external magnetic fields on killing tumor cells and gene transfection in vitro. Methods: Epirubicin-CDMN (EPI-CDMN) and green fluorescent protein (GFP) plasmid-CDMN (GFP-CDMN) were prepared by the oxidation-reduction procedure and their characters were detected, respectively. The effects of EPI-CDMN associated with external pulsed electromagnetic fields (PEMFs) (10 mT) on killing human bladder cancer BIU-87 cells were studied by MTT assay and Annexin-V/PI double-labeled flow cytometry technique, respectively. And the transfection efficiency of GFP when CDMN were used as gene carrier associated with the external magnetic fields was evaluated under fluorescence microscope in vitro. Results: The diameter of EPI-CDMN and GFP-CDMN were about 8~10 nm and 5~9 nm, respectively, and saturation magnetization were 0.22 emu/g and 0.26 emu/g, respectively. EPI-CDMN associated with PEMFs could significantly inhibit the proliferation of BIU-87 cells and induce cells apoptosis, the growth inhibitory rate and apoptosis rate were (21.82(3.18)% and (16.79(3.37)%, respectively. The transfection efficiency of GFP-CDMN combined with PEMFs was significant higher than that of GFP-CDMN without PEMFs [(45.70(4.32)% vs (35.85(2.16)%, P<0.05]. Conclusion: It seemed that EPI-CDMN associated with external magnetic fields could significantly killed human bladder cancer BIU-87 cells and CDMN could effectively transfer GFP gene into tumors cells with the help of external magnetic fields which provided experimental basis for the magnetic targeting therapy of tumor.
机译:目的:研究羧甲基葡聚糖氧化铁磁性纳米粒子(CDMN)的制备以及体外磁场作用下CDMN载体系统对肿瘤细胞杀伤和基因转染的影响。方法:采用氧化还原法制备表柔比星-CDMN(EPI-CDMN)和绿色荧光蛋白(GFP)质粒-CDMN(GFP-CDMN),并检测其特性。分别通过MTT法和Annexin-V / PI双标记流式细胞术研究了与外部脉冲电磁场​​(PEMF)(10 mT)相关的EPI-CDMN对杀死人膀胱癌BIU-87细胞的影响。并在荧光显微镜下评价了CDMN作为外磁场相关基因载体时GFP的转染效率。结果:EPI-CDMN和GFP-CDMN的直径分别约为8〜10 nm和5〜9 nm,饱和磁化强度分别为0.22 emu / g和0.26 emu / g。与PEMFs相关的EPI-CDMN可以显着抑制BIU-87细胞的增殖并诱导细胞凋亡,其生长抑制率和凋亡率分别为(21.82(3.18)%和(16.79(3.37)%)。 -CDMN与PEMF的结合显着高于没有PEMF的GFP-CDMN [(45.70(4.32)%vs(35.85(2.16)%,P <0.05])。结论:似乎EPI-CDMN与外部磁场有关可以在体外磁场的作用下,BIU-87细胞和CDMN可以有效地将人膀胱癌BIU-87细胞杀伤,CDMN可以有效地将GFP基因转移到肿瘤细胞中,为肿瘤的磁靶向治疗提供了实验依据。

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