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Directed self-assembly of fluorescence responsive nanoparticles and their use for real-time surface and cellular imaging

机译:荧光响应纳米粒子的定向自组装及其在实时表面和细胞成像中的用途

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摘要

Directed self-assemblies in water are known as the most efficient means of forming complex higher ordered structures in nature. Here we show a straightforward and robust method for particle assembly which utilises the amphiphilic tri-block co-polymer poloxamer-188 and a hydrophobic fluorophore as the two designer components, which have a built-in ability to convey spatial and temporal information about their surroundings to an observer. Templating of particle self-assembly is attributed to interactions between the fluorophore and hydrophobic segment of the poloxamer. Particle fluorescence in water is quenched but can be induced to selectively switch on in response to temperature, surface adsorption and cellular uptake. The ability of the particles to dynamically modulate emission intensity can be exploited for selective labelling and real-time imaging of drug crystal surfaces, natural fibres and insulin fibrils, and cellular delivery. As particle solutions are easily prepared, further applications for this water-based NIR-fluorescent paint are anticipated.
机译:在水中定向自组装是自然界中形成复杂的高阶结构的最有效方法。在这里,我们展示了一种简单而鲁棒的粒子组装方法,该方法利用两亲三嵌段共聚物poloxamer-188和疏水性荧光团作为两个设计器组件,它们具有内置的能力来传达有关其周围环境的时空信息给观察者。颗粒自组装的模板归因于泊洛沙姆的荧光团和疏水部分之间的相互作用。水中的粒子荧光被猝灭,但可以响应温度,表面吸附和细胞摄取而被诱导选择性开启。可以利用粒子动态调节发射强度的能力来对药物晶体表面,天然纤维和胰岛素原纤维以及细胞递送进行选择性标记和实时成像。由于易于制备颗粒溶液,因此预计该水性NIR荧光涂料会进一步应用。

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