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An Intravascular Magnetic Catheter Enables the Retrieval of Nanoagents from the Bloodstream

机译:血管内磁导管可从血液中检索纳米剂

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摘要

The clinical adoption of nanoscale agents for targeted therapy is still hampered by the quest for a balance between therapy efficacy and side effects on healthy tissues, due to nanoparticle biodistribution and undesired drug accumulation issues. Here, an intravascular catheter able to efficiently retrieve from the bloodstream magnetic nanocarriers not contributing to therapy, thus minimizing their uncontrollable dispersion and consequently attenuating possible side effects, is proposed. The device consists of a miniature module, based on 27 permanent magnets arranged in two coaxial series, integrated into a clinically used 12 French catheter. This device can capture ≈94% and 78% of the unused agents when using as carriers 500 and 250 nm nominal diameter superparamagnetic iron oxide nanoparticles, respectively. This approach paves the way to the exploitation of new “high‐risk/high‐gain” drug formulations and supports the development of novel therapeutic strategies based on magnetic hyperthermia or magnetic microrobots.
机译:由于纳米颗粒的生物分布和不希望的药物蓄积问题,在靶向疗效的治疗效果和对健康组织的副作用之间寻求平衡仍然阻碍了纳米级药物的临床采用。在此,提出了一种血管内导管,该导管能够从​​血流中有效地回收对治疗无贡献的磁性纳米载体,从而使它们的不可控制的分散最小化,从而减轻了可能的副作用。该设备包括一个微型模块,该微型模块基于27个永久磁铁,以两个同轴系列排列,并集成到临床使用的12法式导管中。当将500和250 nm标称直径的超顺磁性氧化铁纳米粒子用作载体时,该设备可以捕获约94%和78%的未使用试剂。这种方法为开发新的“高风险/高收益”药物制剂铺平了道路,并支持基于磁热疗或磁微型机器人的新型治疗策略的开发。

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