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Monitoring controlled release of payload from gold nanocages using surface enhanced raman scattering

机译:使用表面增强拉曼散射监测金纳米笼中有效负载的释放

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摘要

Novel organic and inorganic nanostructures for localized and externally triggered delivery of therapeutic agents at a target site have received immense attention over the past decade owing to their enormous potential in treating complex diseases such as cancer. Gold nanocages, a novel class of hollow plasmonic nanostructures, have been recently demonstrated to serve as carriers for the delivery of payload with external trigger such as light or ultrasound. In this article, we demonstrate that surface enhanced Raman spectroscopy (SERS) can be employed to noninvasively monitor the release of payload from these hollow plasmonic nanostructures. The large enhancement of electromagnetic (EM) field at the interior surface of these nanostructures enables us to monitor the controlled release of Raman-active cargo from nanocages. Considering that SERS can be excited and collected in near-infrared (NIR) therapeutic window, this technique can serve as a powerful tool to monitor the drug release in vivo, providing additional control over externally triggered drug administration.
机译:由于在治疗复杂疾病(例如癌症)方面具有巨大潜力,过去十年来,用于在目标部位局部和外部触发治疗剂的新型有机和无机纳米结构受到了广泛的关注。金纳米笼,一种新型的空心等离激元纳米结构,最近已被证明可以作为载体与外部触发物如光或超声一起传递有效载荷。在本文中,我们证明了可以使用表面增强拉曼光谱(SERS)来无创地监控从这些空心等离激元纳米结构中释放出的有效载荷。这些纳米结构内表面的电磁场(EM)大大增强,使我们能够监控纳米笼中拉曼活性货物的受控释放。考虑到SERS可以被激发并收集在近红外(NIR)治疗窗口中,因此该技术可以用作监视体内药物释放的强大工具,从而提供对外部触发的药物管理的额外控制。

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