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Fluorescent Polymer Nanoparticles Based on Dyes: Seeking Brighter Tools for Bioimaging

机译:基于染料的荧光聚合物纳米粒子:寻求更明亮的生物成像工具

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摘要

Speed, resolution and sensitivity of today's fluorescence bioimaging can be drastically improved by fluorescent nanoparticles (NPs) that are many-fold brighter than organic dyes and fluorescent proteins. While the field is currently dominated by inorganic NPs, notably quantum dots (QDs), fluorescent polymer NPs encapsulating large quantities of dyes (dye-loaded NPs) have emerged recently as an attractive alternative. These new nanomaterials, inspired from the fields of polymeric drug delivery vehicles and advanced fluorophores, can combine superior brightness with biodegradability and low toxicity. Here, we describe the strategies for synthesis of dye-loaded polymer NPs by emulsion polymerization and assembly of pre-formed polymers. Superior brightness requires strong dye loading without aggregation-caused quenching (ACQ). Only recently several strategies of dye design were proposed to overcome ACQ in polymer NPs: aggregation induced emission (AIE), dye modification with bulky side groups and use of bulky hydrophobic counterions. The resulting NPs now surpass the brightness of QDs by approximate to 10-fold for a comparable size, and have started reaching the level of the brightest conjugated polymer NPs. Other properties, notably photostability, color, blinking, as well as particle size and surface chemistry are also systematically analyzed. Finally, major and emerging applications of dye-loaded NPs for in vitro and in vivo imaging are reviewed.
机译:荧光纳米颗粒(NP)的亮度,分辨率和灵敏度可以比有机染料和荧光蛋白高很多倍,从而大大提高了当今荧光生物成像的速度,分辨率和灵敏度。尽管目前该领域主要由无机NP主导,但量子点(QD)尤为重要,但封装大量染料(载有染料的NP)的荧光聚合物NP最近作为一种有吸引力的替代品出现了。这些新的纳米材料受到聚合物药物递送载体和先进的荧光团领域的启发,可以将卓越的亮度与可生物降解性和低毒性相结合。在这里,我们描述了通过乳液聚合和组装预先形成的聚合物来合成染料负载的聚合物NP的策略。优异的亮度需要强大的染料负载量,而不会发生聚集引起的猝灭(ACQ)。直到最近,才提出了几种染料设计策略来克服聚合物NP中的ACQ:聚集诱导发射(AIE),具有庞大侧基的染料修饰和庞大疏水性抗衡离子的使用。对于可比较的尺寸,现在得到的NP超过QD的亮度约10倍,并且已经开始达到最亮的共轭聚合物NP的水平。还系统地分析了其他性质,尤其是光稳定性,颜色,闪烁以及颗粒大小和表面化学性质。最后,综述了载有染料的NP在体外和体内成像中的主要和新兴应用。

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