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Self-Assembled Biocompatible Fluorescent Nanoparticles for Bioimaging

机译:自组装生物相容性荧光纳米粒子的生物成像

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摘要

Fluorescence is a powerful tool for mapping biological events in real-time with high spatial resolution. Ultra-bright probes are needed in order to achieve high sensitivity: these probes are typically obtained by gathering a huge number of fluorophores in a single nanoparticle (NP). Unfortunately this assembly produces quenching of the fluorescence because of short-range intermolecular interactions. Here we demonstrate that rational structural modification of a well-known molecular fluorophore N-(7-nitrobenz-2-oxa-1,3-diazol-4-yl) (NBD) produces fluorophores that self-assemble in nanoparticles in the biocompatible environment without any dramatic decrease of the fluorescence quantum yield. Most importantly, the resulting NP show, in an aqueous environment, a brightness which is more than six orders of magnitude higher than the molecular component in the organic solvent. Moreover, the NP are prepared by nanoprecipitation and they are stabilized only via non-covalent interaction, they are surprisingly stable and can be observed as individual bright spots freely diffusing in solution at a concentration as low as 1 nM. The suitability of the NP as biocompatible fluorescent probes was demonstrated in the case of HeLa cells by fluorescence confocal microscopy and MTS assays.
机译:荧光是用于以高空间分辨率实时绘制生物事件的强大工具。为了获得高灵敏度,需要超亮探针:这些探针通常是通过在单个纳米粒子(NP)中收集大量荧光团而获得的。不幸的是,由于短程分子间相互作用,这种组装产生了荧光的猝灭。在这里,我们证明了众所周知的分子荧光团N-(7-硝基苯-2-氧杂-1,3-二氮杂-4-基)(NBD)的合理结构修饰产生了在生物相容性环境中在纳米粒子中自组装的荧光团。荧光量子产率没有显着降低。最重要的是,所得的NP在水性环境中显示出比有机溶剂中的分子组分高出六个数量级以上的亮度。此外,NP是通过纳米沉淀制备的,仅通过非共价相互作用才能稳定,它们出奇地稳定,可以观察到单个亮点以低至1 nM的浓度在溶液中自由扩散。在HeLa细胞的情况下,通过荧光共聚焦显微镜和MTS分析证明了NP作为生物相容性荧光探针的适用性。

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