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Preparation of Superparamagnetic Dextran-coated Iron Oxide Nanoparticles used as a Novel Gene Carrier into Human Bladder Cancer Cells' 被引量:1

超顺磁性葡聚糖氧化铁纳米颗粒的制备及其作为基因载体的可行性研究(英文)
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摘要 Objective: Application of magnetic nanoparticles as gene carrier in gene therapy has developed quickly. This study was designed to investigate the preparation of superparamagnetic dextran-coated iron oxide nanoparticles (SDION) and the feasibility of SDION used as a novel gene carrier for plasmid DNA in vitro. Methods: SDION were prepared by chemical coprecipitation and separated by gel filtration on Sephacryl S-300HR, characterized by TEM, laser scattering system and Vibrating Sample Magnetometer Signal Processor. The green fluorescent protein (pGFP-C2) plasmid DNA was used as target gene. SDION-pGFP-C2 conjugate compounds were produced by means of oxidoreduction reaction. The connection ratio of SDION and pGFP-C2 DNA was analyzed and evaluated by agarose electrophoresis and the concentration of pGFP-C2 in supernatant was measured. Using liposome as control, the transfection efficiency of SDION and liposome was respectively evaluated under fluorescence microscope in vitro. Results: The diameter of SDION ranges from 3 nm to 8 nm, the effective diameter was 59.2 nm and the saturation magnetization was 0.23 emu/g. After SDION were reasonably oxidized, SDION could connect with pGFP-C2 to a high degree. The transfection efficiency of SDION as gene carrier was higher than that of liposome. Conclusion: The successes in connecting SDION with pGFP-C2 plasmid by means of oxidoreduction reaction and in transferring pGFP-C2 gene into human bladder cancer BIU-87 cells in vitro provided the experimental evidence for the feasibility of SDION used as a novel gene carrier.
出处 《The Chinese-German Journal of Clinical Oncology》 CAS 2005年第3期183-186,191,共5页 中德临床肿瘤学杂志(英文版)
基金 This project was supported by a grant from the National Natural Science Foundation of China (No. 30271300).
关键词 iron oxide magnetic nanoparticles SUPERPARAMAGNETIC gene carrier TRANSFECTION 右旋糖苷 氧化物 超磁化处理 特异基因 膀胱癌 肿瘤细胞
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  • 1胡云霞,原续波,康春生,郭毅,常津.同载基因和药物的超微载体粒子的制备及体外评价[J].高分子通报,2004(4):69-73. 被引量:18
  • 2姜炜,李凤生,陈令允,杨毅,楚建军.新型磁性Fe_3O_4/EDTA复合纳米粒子的制备及性能研究[J].物理化学学报,2005,21(2):182-186. 被引量:17
  • 3陈令允,姜炜,李凤生,王英会,周建.液相沉积法制备磁性纳米Fe_3O_4/SiO_2复合粒子[J].机械工程材料,2005,29(4):34-37. 被引量:13
  • 4林本兰,沈晓冬,崔升.油酸修饰纳米Fe_3O_4的制备及其表征[J].兵器材料科学与工程,2006,29(1):70-72. 被引量:7
  • 5Gangopadhyay P,Gallet S,Franz E,et al.Novel superparamagnetic core(shell) nanoparticles for magnetic targeted drug delivery and hyperthermia treatment[J].IEEE Trans Magnetics,2005,41(10):4194.
  • 6Christoph A,Roland J,Roswitha S,et al.In vitro and in vivo investigations of targeted chemotherapy with magnetic nanoparticles[J].J Magnetism and Magnetic Mater,2005,293:389.
  • 7Cao J Q,Wang Y X,Yu J F,et al.Preparation and radiolabeling of surface-modifified magnetic naoparticles withrhenium-188 for magnetic targeted radiofherapy[J].J Magnetism and Magnetic Mater,2004,277:165.
  • 8Yang J,Park S B,Yoon H G,et al.Preparation of poly ε-caprolactone nanoparticles containing magnetite for magnetic drug carrier[J].Int J Pharm,2006,324:185.
  • 9Zhang Ch F,Cao J Q,Yin D Zh,et al.Preparation and radiolabeling of human serum albumin (HSA)-coated magnetite nanoparticles for magnetically targeted therapy[J].Applied Radiation and Isotopes,2004,61:1255.
  • 10Hafeli U,Pauer G,Failing S,et al.Radiolabeling of magnetic particle with rhenium-188 for cancer therapy[J].J Magnetism and Magnetic Mater,2001,225:73.

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