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Application of Ferriferous Oxide Modified by Chitosan in Gene Delivery

机译:壳聚糖修饰的亚铁氧化物在基因传递中的应用

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摘要

New approaches to improve the traditional gene carriers are still required. Here we explore Fe3O4 modified with degradable polymers that enhances gene delivery and target delivery using permanent magnetic field. Two magnetic Fe3O4 nanoparticles coated with chitosan (CTS) and polyethylene glycol (PEG) were synthesized by means of controlled chemical coprecipitation. Plasmid pEGFP was encapsulated as a reported gene. The ferriferous oxide complexes were approximately spherical; surface charge of CTS-Fe3O4 and PEG-Fe3O4 was about 20 mv and 0 mv, respectively. The controlled release of DNA from the CTS-Fe3O4 nanoparticles was observed. Concurrently, a desired Fe3O4 concentration of less than 2 mM was verified as safe by means of a cytotoxicity test in vitro. Presence of the permanent magnetic field significantly increased the transfection efficiency. Furthermore, the passive target property and safety of magnetic nanoparticles were also demonstrated in an in vivo test. The novel gene delivery system was proved to be an effective tool required for future target expression and gene therapy in vivo.
机译:仍然需要改进传统基因载体的新方法。在这里,我们探索用可降解聚合物修饰的Fe3O4,该聚合物可利用永久磁场增强基因传递和靶传递。通过控制化学共沉淀法合成了两种包覆有壳聚糖(CTS)和聚乙二醇(PEG)的磁性Fe3O4纳米粒子。质粒pEGFP被封装为报道的基因。亚铁氧化物络合物为近似球形。 CTS-Fe3O4和PEG-Fe3O4的表面电荷分别约为20 mv和0 mv。观察到从CTS-Fe3O4纳米颗粒中DNA的受控释放。同时,通过体外细胞毒性试验证实所需的Fe3O4浓度小于2µmM是安全的。永久磁场的存在大大提高了转染效率。此外,在体内测试中还证明了磁性纳米颗粒的被动靶性能和安全性。事实证明,新型基因传递系统是未来靶标表达和体内基因治疗所需的有效工具。

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