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首页> 外文期刊>Biomacromolecules >Hydrophobic-Sheath Segregated Macromolecular Fluorophores: Colloidal Nanoparticles of Polycaprolactone-Grafted Conjugated Polymers with Bright Far-Red/Near-Infrared Emission for Biological Imaging
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Hydrophobic-Sheath Segregated Macromolecular Fluorophores: Colloidal Nanoparticles of Polycaprolactone-Grafted Conjugated Polymers with Bright Far-Red/Near-Infrared Emission for Biological Imaging

机译:疏水鞘分离的大分子荧光团:聚己内酯接枝的共轭聚合物的胶体纳米粒子,具有明亮的远红/近红外发射生物成像。

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摘要

This article describes molecular design, synthesis and characterization of colloidal nanoparticles containing polycaprolactone-grafted conjugated polymers that exhibit strong far redear-infrared (FR/NIR) fluorescence for bioimaging. Specifically, we synthesized two kinds of conjugated polymer bottle brushes (PFTBout-g-PCL and PFTBin-g-PCL) with different positions of the hexyl groups on the thiophene rings. A synthetic amphiphilic block copolymer PCL-b-POEGMA was employed as surfactants to encapsulate PFTB-g-PCL polymers into colloidal nanoparticles (denoted as "nanoREDs") in aqueous media. The chain length of the PCL side chains in PFTB-g-PCL played a critical role in determining the fluorescence properties in both bulk solid states and the colloidal nanoparticles. Compared to semiconducting polymer dots (Pdots) composed of PFTBout without grafted PCL, nanoRED(out) showed at least four times higher fluorescence quantum yield (similar to 20%) and a broader emission band centered at 635 nm. We further demonstrated the application of this new class of nanoREDs for effective labeling of L929 cells and HeLa cancer cells with good biocompatibility. This strategy of hydrophobic-sheath segregated macromolecular fluorophores is expected to be applicable to a broad range of conjugated polymers with tunable optical properties for applications such as bioimaging.
机译:本文介绍了包含聚己内酯接枝的共轭聚合物的胶体纳米颗粒的分子设计,合成和表征,该胶体纳米颗粒对生物成像具有很强的远红/近红外(FR / NIR)荧光。具体来说,我们合成了噻吩环上己基位置不同的两种共轭聚合物瓶刷(PFTBout-g-PCL和PFTBin-g-PCL)。使用合成的两亲嵌段共聚物PCL-b-POEGMA作为表面活性剂,将PFTB-g-PCL聚合物包封在水性介质中的胶体纳米颗粒(表示为“ nanoRED”)中。 PFTB-g-PCL中PCL侧链的链长在决定整体固态和胶体纳米颗粒的荧光特性中起着至关重要的作用。与由无接枝PCL的PFTBout组成的半导体聚合物点(Pdots)相比,nanoRED(out)显示出至少四倍的荧光量子产率(大约20%)和更宽的以635 nm为中心的发射带。我们进一步证明了这种新型的nanoRED在具有良好生物相容性的L929细胞和HeLa癌细胞的有效标记中的应用。疏水鞘分离大分子荧光团的这种策略有望应用于具有可调光学性质的多种共轭聚合物,以用于诸如生物成像的应用。

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