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Magnetizable needles and wires - modeling an efficient way to target magnetic microspheres in vivo

机译:可磁化的针和线-模拟体内靶向磁性微球的有效方法

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The in vivo targeting of tumors with magnetic microspheres is currently realized through the application of external non-uniform magnetic fields generated by rare-earth permanent magnets or electromagnets. Our theoretical work suggests a feasible procedure for local delivery of magnetic nano- and microparticles to a target area. In particular, thin magnetizable wires placed throughout or close to the target area and magnetized by a perpendicular external uniform background magnetic field are used to concentrate magnetic microspheres injected into the target organ's natural blood supply. The capture of the magnetic particles and the building of deposits thereof in the blood vessels of the target area were modeled under circumstances similar to the in vivo situation. This technique could be applied to magnetically targeted cancer therapy or magnetic embolization therapy with magnetic particles that contain anticancer agents, such as chemotherapeutic drugs or therapeutic radioisotopes.
机译:目前,通过应用由稀土永磁体或电磁体产生的外部非均匀磁场,可以实现利用磁性微球体内靶向肿瘤的目标。我们的理论工作提出了将磁性纳米颗粒和磁性颗粒局部输送到目标区域的可行程序。特别地,细的可磁化导线放置在整个或接近目标区域,并被垂直的外部均匀背景磁场磁化,用于集中注入目标器官自然血液供应中的磁性微球。在与体内情况相似的情况下,对目标区域的血管中磁性颗粒的捕获及其沉积物的堆积进行了建模。该技术可以应用于磁性靶向的癌症治疗或磁性栓塞治疗,其中的磁性颗粒含有抗癌剂,例如化学治疗药物或放射性同位素。

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