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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Dye-Condensed Biopolymeric Hybrids: Chromophoric Aggregation and Self-Assembly toward Fluorescent Bionanoparticles for Near Infrared Bioimaging
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Dye-Condensed Biopolymeric Hybrids: Chromophoric Aggregation and Self-Assembly toward Fluorescent Bionanoparticles for Near Infrared Bioimaging

机译:染料缩合的生物聚合物杂化物:发色团聚和对近红外生物成像的荧光纳米粒子的自组装。

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摘要

Novel fluorescent bionanoparticles (GC3CNx) were prepared by self-assembly of biopolymeric amphiphiles that are composed of hydrophilic glycol chitosan (GC) as a biopolymeric backbone and a dipolar tricyanostilbene derivative (3CN) as a densely conjugated hydrophobic pendant. In the molecular design of 3CN, a dipolar electronic structure was introduced to spectrally shift the aggregation-induced enhanced fluorescence of the a-cyanostilbene skeleton toward the near-infrared (NIR) useful for bioimaging. It has been found that the fluorescence of GC3CNx nanoparticles is red-shifted and intensified by increasing the 3CN content in the biopolymeric amphiphile. By cellular and in vivo imaging experiments, we demonstrate that GC3CNx nanoparticles have great potential for NIR bioimaging, with attractive properties including enhanced fluorescence signal, efficient cellular uptake, and better spectral coincidence with the in vivo transparent window.
机译:通过自组装由亲水性乙二醇壳聚糖(GC)作为生物聚合物主链和偶极三氰基茂金属衍生物(3CN)作为致密共轭疏水侧链的生物聚合物两亲物自组装制备了新型荧光纳米粒子(GC3CNx)。在3CN的分子设计中,引入了偶极电子结构,以将聚集诱导的α-氰基茂金属骨架的增强荧光向可用于生物成像的近红外(NIR)转移。已经发现,通过增加生物聚合物两亲物中3CN的含量,GC3CNx纳米颗粒的荧光发生红移并增强。通过细胞和体内成像实验,我们证明GC3CNx纳米粒子具有巨大的NIR生物成像潜力,其诱人的特性包括增强的荧光信号,有效的细胞摄取以及与体内透明窗口更好的光谱重合。

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