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首页> 外文期刊>Advanced Optical Materials >Softness Meets with Brightness: Dye-Doped Multifunctional Fluorescent Polymer Particles via Microfluidics for Labeling
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Softness Meets with Brightness: Dye-Doped Multifunctional Fluorescent Polymer Particles via Microfluidics for Labeling

机译:柔软性与亮度达到亮度:通过微流体染料掺杂多官能荧光聚合物颗粒进行标记

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摘要

Fluorogenic labeling strategies have emerged as powerful tools for in vivo and in vitro imaging applications for diagnostic and theranostic purposes. Free organic chromophores (fluorescent dyes) are bright but rapidly degrade. Inorganic nanoparticles (e.g., quantum dots) are photostable but toxic to biological systems. Alternatively, dye-doped polymer particles are promising for labeling and imaging due to their properties that overcome limitations of photodegradation and toxicity. This progress report, therefore, presents various synthesis techniques for the generation of dye-doped fluorescent polymer particles. Polymer particles are relatively soft compared to inorganic nanoparticles and can be synthesized with characteristics like biocompatibility and stimuli responsiveness. Also, their ability of loading fluorophores through various interactions reveals brightness. Here, a multiscale-multicolor library of bright and soft fluorescent polymer particles is generated hierarchically. Various microfluidic supported strategies have been applied where fluorophores can be linked to polymeric networks noncovalently and covalently in the interior, and at the surface of nanoparticles (60-550 nm). Besides, microfluidic strategies for hydrophilic and hydrophobic fluorescent polymer microparticles (20-800 mu m) have been performed for systematic tuning in size and color combination. Furthermore, soft and bright particulate assemblies are enabled through interfacial interactions at the intermediate scale (600 nm-3 mu m) between the nanometer and micrometer lengthscale.
机译:荧光标记策略出现为体内和体外成像应用的强大工具,用于诊断和治疗目的。免费有机发色团(荧光染料)明亮但快速降解。无机纳米颗粒(例如量子点)是光稳定的,但对生物系统有毒。或者,染料掺杂的聚合物颗粒是对克服光降解和毒性局限性的性质的标记和成像。因此,该进度报告呈现了用于产生染料掺杂荧光聚合物颗粒的各种合成技术。与无机纳米颗粒相比,聚合物颗粒相对柔软,并且可以用生物相容性和刺激反应性等特征合成。此外,它们通过各种相互作用加载荧光团的能力揭示了亮度。这里,在分层上产生明亮荧光聚合物颗粒的多尺寸多色文库。已经应用了各种微流体支持的策略,其中荧光团可以与聚合物网络连接在内部中,并且在内部的内容中和在纳米颗粒表面(60-550nm)中。此外,已经进行了亲水性和疏水荧光聚合物微粒(20-800μm)的微流体策略,用于系统调整尺寸和颜色组合。此外,通过纳米和千分尺长度之间的中间刻度(600nm-3μm)处的界面相互作用,使柔软和明亮的颗粒组件能够。

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