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Core-shell designs of photoluminescent nanodiamonds with porous silica coatings for bioimaging and drug delivery II: application

机译:核壳设计的发光金刚石与多孔硅涂料bioimaging和药物输送II:应用程序

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摘要

Recent advances within materials science and its interdisciplinary applications in biomedicine have emphasized the potential of using a single multifunctional composite material for concurrent drug delivery and biomedical imaging. Here we present a novel composite material consisting of a photoluminescent nanodiamond (ND) core with a porous silica (SiO2) shell. This novel multifunctional probe serves as an alternative nanomaterial to address the existing problems with delivery and subsequent tracing of the particles. Whereas the unique optical properties of ND allows for long-term live cell imaging and tracking of cellular processes, mesoporous silica nanoparticles (MSNs) have proven to be efficient drug carriers. The advantages of both ND and MSNs were hereby integrated in the new composite material, ND@MSN. The optical properties provided by the ND core rendered the nanocomposite suitable for microscopy imaging in fluorescence and reflectance mode, as well as super-resolution microscopy as a STED label; whereas the porous silica coating provided efficient intracellular delivery capacity, especially in surface-functionalized form. This study serves as a demonstration how this novel nanomaterial can be exploited for both bioimaging and drug delivery for future theranostic applications.
机译:在材料科学及其最新进展在生物医学跨学科的应用强调使用单一的潜力吗并发的多功能复合材料药和生物医学成像。组成的一种新型复合材料核心与发光金刚石(ND)多孔硅(二氧化硅)外壳。多功能探针作为一个替代选择纳米材料来解决存在的问题交付和后续的跟踪粒子。ND允许长期活细胞成像跟踪的细胞过程,介孔二氧化硅纳米颗粒(msn)已被证明是有效的药物载体。在此集成在新的复合吗材料,ND@MSN。ND核心呈现纳米复合材料适用于荧光显微成像和反射模式,以及超分辨率显微镜、标签;二氧化硅涂层提供了高效的细胞内交付能力,特别是在surface-functionalized形式。这一新颖的纳米材料可以示范如何被利用bioimaging和药物未来theranostic交付应用程序。

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