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Mesoporous persistent nanophosphors for in vivo optical bioimaging and drug-delivery

机译:介孔持久nanophosphors体内光学bioimaging和药物传输

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Based upon the ambitious idea that one single particle could serve multiple purposes at the same time, the combination and simultaneous use of imaging and therapeutics has lately arisen as one of the most promising prospects among nanotechnologies directed toward biomedical applications. Intended for both therapeutics and diagnostics in vivo, highly complex nanostructures were specifically designed to simultaneously act as optical imaging probes and delivery vehicles. Yet, such multifunctional photonic nanoplatforms usually exploit fluorescence phenomena which require constant excitation light through biological tissues and thus significantly reduce the detection sensitivity due to the autofluorescence from living animals. In order to overcome this critical issue, the present article introduces a novel multifunctional agent based on persistent luminescence mesoporous nanoparticles. Being composed of a hybrid chromium-doped zinc gallate core/mesoporous silica shell architecture, we show that this nanotechno-logy can be used as an efficient doxorubicin-delivery vehicle presenting a higher cytotoxicity toward U87MG cells than its unloaded counterpart in vitro. In addition, we demonstrate that a persistent luminescence signal from these doxorubicin-loaded mesoporous nanophosphors opens a new way to highly sensitive detection in vivo, giving access to the real-time biodistribution of the carrier without any autofluorescence from the animal tissues. This new persistent luminescence-based hybrid nanotechnology can be easily applied to the delivery of any therapeutic agent, thus constituting a versatile and sensitive optical nanotool dedicated to both therapeutic and diagnostic applications in vivo.
机译:基于一个雄心勃勃的想法粒子可以用于多种目的同时,结合,同时使用成像和治疗最近兴起的其中一个最广阔的前景纳米技术针对生物医学应用程序。诊断体内,高度复杂的纳米结构是专门设计的同时作为光学成像探测器和运载工具。光子nanoplatforms通常利用荧光现象需要不断通过生物组织和激发光从而大大降低检测由于自体荧光灵敏度生活的动物。关键问题,本文介绍了新型多功能代理基于持久发光介孔纳米粒子。组成的混合chromium-doped锌酸酯核心/介孔二氧化硅外壳架构,我们表明,该nanotechno-logy可以作为高效doxorubicin-delivery汽车展示向U87MG更高的细胞毒性细胞比它卸载体外。证明一个持久发光信号从这些doxorubicin-loaded介孔nanophosphors打开一个高度敏感的新方法检测体内,给实时访问biodistribution航母没有任何从动物组织自体荧光。新的持久luminescence-based混合纳米技术可以很容易地应用到交付任何治疗的代理,因此组成一个多才多艺的和敏感的光nanotool致力于治疗和体内诊断应用程序。

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