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Facile integration of multiple magnetite nanoparticles for theranostics combining efficient MRI and thermal therapy

机译:肤浅的集成多个磁铁矿纳米粒子对开展相结合高效的核磁共振成像和热疗

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摘要

Multifunctional nanostructures with both diagnostic and therapeutic capabilities have attracted considerable attention in biomedical research because they can offer great advantages in disease management and prognosis. In this work, a facile way to transfer the hydrophobic iron oxide (IO) nanoparticles into aqueous media by employing carboxylic graphene oxide (GO-COOH) as the transferring agent has been reported. In this one-step process, IO nanoparticles adhere to GO-COOH and form water-dispersible clusters via hydrophobic interactions between the hydrophobic ligands of IO nanoparticles and the basal plane of GO-COOH. The multiple IO nanoparticles on GO-COOH sheets (IO/GO-COOH) present a significant increase in T-2 contrast enhancement. Moreover, the IO/GO-COOH nanoclusters also display a high photothermal conversion efficiency and can effectively inhibit tumor growth through the photothermal effects. It is envisioned that such IO/GO-COOH nanocomposites combining efficient MRI and photothermal therapy hold great promise in theranostic applications.
机译:多功能纳米结构与诊断和治疗能力在生物医学引起了相当大的关注研究,因为他们可以提供巨大的优势在疾病管理和预后。工作,简单地将疏水性氧化铁(IO)纳米颗粒水媒体通过使用羧基的石墨烯氧化物(GO-COOH)随着转移剂被报道。这一步的过程,IO纳米粒子坚持GO-COOH并形成水分散集群通过疏水性之间的疏水相互作用配体的IO纳米颗粒和底面GO-COOH。GO-COOH表(IO / GO-COOH)重要2增加对比度增强。IO / GO-COOH发光显示一个较高的水平光热光谱分析转换效率和能通过有效地抑制肿瘤的生长光照效果。IO / GO-COOH纳米复合材料结合有效的核磁共振和光照疗法蕴含着巨大的希望theranostic应用程序。

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