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首页> 外文期刊>Nanoscale >Magnetically triggered release of molecular cargo from iron oxide nanoparticle loaded microcapsules
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Magnetically triggered release of molecular cargo from iron oxide nanoparticle loaded microcapsules

机译:分子磁性触发释放货物从氧化铁纳米微胶囊

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Photothermal release of cargo molecules has been extensively studied for bioapplications. For instance, microcapsules decorated with plasmonic nanoparticles have been widely used in in vitro assays. However, some concerns about their suitability for some in vivo applications cannot be easily overcome, in particular the limited penetration depth of light (even infrared). Magnetic nanoparticles are alternative heatmediators for local heating, which can be triggered by applying an alternating magnetic field (AMF). AMFs are much less absorbed by tissue than light and thus can penetrate deeper overcoming the above mentioned limitations. Here we present iron oxide nanocube-modified microcapsules as a platform for magnetically triggered molecular release. Layer-by-layer assembled polyelectrolyte microcapsules with 4.6 mu m diameter, which had 18 nm diameter iron oxide nanocubes integrated in their walls, were synthesized. The microcapsules were further loaded with an organic fluorescent polymer (Cascade Blue-labelled dextran), which was used as a model of molecular cargo. Through an AMF the magnetic nanoparticles were able to heat their surroundings and destroy the microcapsule walls, leading to a final release of the embedded cargo to the surrounding solution. The cargo release was monitored in solution by measuring the increase in both absorbance and fluorescence signal after the exposure to an AMF. Our results demonstrate that magnetothermal release of the encapsulated material is possible using magnetic nanoparticles with a high heating performance.
机译:光热光谱分析分子被释放的货物bioapplications广泛研究。例如,微胶囊装饰着电浆纳米粒子已被广泛应用于体外化验。适合一些体内应用程序不能很容易克服,尤其是有限光的穿透深度(甚至红外)。磁性纳米粒子是替代heatmediators局部加热,可以通过应用一个交变磁场的触发字段(AMF)。组织超过光速,因此可以穿透更深克服上述限制。我们现在的氧化铁nanocube-modified磁性微胶囊作为一个平台触发分子释放。与4.6组装聚电解质微胶囊μm直径,直径18海里铁氧化nanocubes集成在他们的墙壁,合成。富含有机荧光聚合物(级联Blue-labelled右旋糖酐)使用作为模型分子的货物。磁性纳米粒子能够热他们环境,破坏微胶囊壁,导致最终版本的嵌入式货物周围的解决方案。监控解决方案通过测量增加吸光度和荧光接触后一个AMF的信号。证明magnetothermal释放的封装使用磁性材料是可行的纳米粒子具有高加热性能。

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