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Multilayered semiconducting polymer nanoparticles with enhanced NIR fluorescence for molecular imaging in cells, zebrafish and mice

机译:具有增强的NIR荧光的多层半导体聚合物纳米颗粒,可用于细胞,斑马鱼和小鼠的分子成像

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Although organic semiconducting polymer nanoparticles (SPNs) have emerged as an important category of optical imaging agents, their application in molecular imaging is still in its infancy and faces many challenges. We herein report a straightforward one-pot synthetic approach to construct multilayered near-infrared (NIR) fluorescent SPNs with enhanced fluorescence and optimized biodistribution for in vivo molecular imaging. In addition to the SP core, the multilayered SPNs have a middle silica protection layer and an outer poly(ethylene glycol) (PEG) corona, which play crucial roles in enhancing the NIR fluorescence by up to similar to 100 fold and reducing nonspecific interactions, respectively. Their proof-of-concept imaging applications are demonstrated in cells, zebrafish and living mice. The multilayered nanoarchitecture not only permits in vivo lymph node tracking with an ultrahigh signal-to-noise ratio (similar to 85), but also allows for more sensitive in vivo imaging of tumors with a fluorescence intensity ratio of tumor to liver that is similar to 8-fold higher compared to that of the counterpart silica SPN. Thus, this study provides a simple yet effective nanoengineering approach to facilitate the application of SPNs in molecular imaging.
机译:尽管有机半导体聚合物纳米颗粒(SPN)已成为光学成像剂的重要类别,但它们在分子成像中的应用仍处于起步阶段,并面临许多挑战。我们在这里报告了一种简单的一锅合成方法,以构建具有增强的荧光和优化的生物分布的体内分子成像的多层近红外(NIR)荧光SPN。除了SP核外,多层SPN还具有中间的二氧化硅保护层和外部的聚乙二醇(PEG)电晕,它们在将NIR荧光强度提高多达100倍并减少非特异性相互作用方面起着至关重要的作用,分别。它们的概念验证成像应用已在细胞,斑马鱼和活体小鼠中得到证明。多层纳米结构不仅允许以超高的信噪比(类似于85)进行体内淋巴结追踪,而且还允许对肿瘤进行更敏感的体内成像,其肿瘤与肝脏的荧光强度比与与对应的二氧化硅SPN相比,高8倍。因此,本研究提供了一种简单而有效的纳米工程方法,以促进SPN在分子成像中的应用。

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