光热治疗
材料科学
纳米技术
纳米材料
药物输送
表面改性
纳米线
光热效应
纳米复合材料
磁芯
阿霉素
氧化铁纳米粒子
纳米结构
靶向给药
纳米颗粒
化学工程
医学
化疗
电气工程
外科
工程类
电磁线圈
作者
Aldo Isaac Martínez-Banderas,Antonio Aires,Marta Quintanilla,Jorge A. Holguín‐Lerma,Claudia Lozano-Pedraza,Francisco J. Terán,Julián A. Moreno,Jose E. Perez,Boon S. Ooi,Timothy Ravasi,Jasmeen S. Merzaban,Aitziber L. Cortajarena,Jürgen Kosel
标识
DOI:10.1021/acsami.9b17512
摘要
Combining different therapies into a single nanomaterial platform is a promising approach for achieving more efficient, less invasive, and personalized treatments. Here, we report on the development of such a platform by utilizing nanowires with an iron core and iron oxide shell as drug carriers and exploiting their optical and magnetic properties. The iron core has a large magnetization, which provides the foundation for low-power magnetic manipulation and magnetomechanical treatment. The iron oxide shell enables functionalization with doxorubicin through a pH-sensitive linker, providing selective intracellular drug delivery. Combined, the core–shell nanostructure features an enhanced light–matter interaction in the near-infrared region, resulting in a high photothermal conversion efficiency of >80% for effective photothermal treatment. Applied to cancer cells, the collective effect of the three modalities results in an extremely efficient treatment with nearly complete cell death (∼90%). In combination with the possibility of guidance and detection, this platform provides powerful tools for the development of advanced treatments.
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