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Magnetic Nanostructured System for Biomedical Applications Based on FeNi Nanotubes

机译:基于FENI纳米管的生物医学应用磁性纳米结构系统

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FeNi nanotubes with a length of 12 μm, a diameter of 400 nm, and a wall thickness of ~120 nm (obtained by template synthesis in the pores of polyethylene terephthalate ion-track membranes) are used to create a tool for the targeted delivery of drugs and genes. The possibility of coating their surface with a biocompatible polymer (polymethylmethacrylate) and the functionalization by the protein on the example of concanavalin A as a magnetic carrier for targeted delivery is demonstrated. To implement the system for the targeted delivery of drugs such as “magnetic nanostructure + polymer coating + pharmaceutical agent” based on FeNi nanotubes, a scheme for the phased functionalization of nanostructures is developed which includes three main stages: (1) passivation of the surface with the formation of OH groups on the surface of nanotubes through which (2) polymethylmethacrylate molecules are attached through carboxyl groups and (3) concanavalin A molecules are immobilized on the surface of the polymer film through amide groups.
机译:长度为12μm,直径为400nm的Feni纳米管和壁厚〜120nm的壁厚(通过聚对苯二甲酸乙二醇酯离子轨道膜的孔中的模板合成获得)用于为靶向递送产生工具药物和基因。证实了用生物相容性聚合物(聚甲基丙烯酸甲酯)涂覆其表面的可能性和通过蛋白质的蛋白质的官能化作为靶向递送的磁性载体。为了实现基于FENI纳米管的有针对性递送的药物递送的药物,纳米结构的分阶段官能化方案是开发的,包括三个主要阶段:(1)表面的钝化通过在纳米管表面上形成OH基团,通过(2)聚甲基丙烯酸甲酯分子通过羧基连接(3)康丹醛蛋白,分子通过酰胺基团固定在聚合物膜的表面上。

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