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Pre- and postfunctionalized self-assembled π-conjugated fluorescent organic nanoparticles for dual targeting.预功能化和后功能化自组装π共轭荧光有机纳米粒子用于双重靶向。
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Conjugated polymer nanoparticles for small interfering RNA delivery.用于小干扰 RNA 递送的共轭聚合物纳米颗粒。
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Photosensitizer-doped conjugated polymer nanoparticles with high cross-sections for one- and two-photon excitation.具有高光敏剂掺杂共轭聚合物纳米粒子的单光子和双光子激发的高截面。
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对于生成高性能半导体聚合物点而言,拥有低密度功能基团非常重要。

Importance of having low-density functional groups for generating high-performance semiconducting polymer dots.

机构信息

Department of Chemistry, University of Washington, Seattle, Washington 98195, USA.

出版信息

ACS Nano. 2012 Jun 26;6(6):5429-39. doi: 10.1021/nn301308w. Epub 2012 May 24.

DOI:10.1021/nn301308w
PMID:22607220
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3383935/
Abstract

Semiconducting polymers with low-density side-chain carboxylic acid groups were synthesized to form stable, functionalized, and highly fluorescent polymer dots (Pdots). The influence of the molar fraction of hydrophilic side-chains on Pdot properties and performance was systematically investigated. Our results show that the density of side-chain carboxylic acid groups significantly affects Pdot stability, internal structure, fluorescence brightness, and nonspecific binding in cellular labeling. Fluorescence spectroscopy, single-particle imaging, and a dye-doping method were employed to investigate the fluorescence brightness and the internal structure of the Pdots. The results of these experiments indicate that semiconducting polymers with low density of side-chain functional groups can form stable, compact, and highly bright Pdots as compared to those with high density of hydrophilic side-chains. The functionalized polymer dots were conjugated to streptavidin (SA) by carbodiimide-catalyzed coupling and the Pdot-SA probes effectively and specifically labeled the cancer cell-surface marker Her2 in human breast cancer cells. The carboxylate-functionalized polymer could also be covalently modified with small functional molecules to generate Pdot probes for click chemistry-based bio-orthogonal labeling. This study presents a promising approach for further developing functional Pdot probes for biological applications.

摘要

具有低密度侧链羧酸基团的半导体聚合物被合成以形成稳定、功能化和高荧光聚合物点(Pdots)。系统研究了亲水性侧链摩尔分数对 Pdot 性质和性能的影响。我们的结果表明,侧链羧酸基团的密度显著影响 Pdot 的稳定性、内部结构、荧光亮度和细胞标记中的非特异性结合。荧光光谱、单粒子成像和染料掺杂方法用于研究 Pdots 的荧光亮度和内部结构。这些实验的结果表明,与具有高密度亲水性侧链的聚合物相比,具有低密度侧链官能团的半导体聚合物可以形成稳定、紧凑和高亮度的 Pdots。功能化聚合物点通过碳二亚胺催化偶联与链霉亲和素(SA)缀合,Pdot-SA 探针有效地和特异性地标记了人乳腺癌细胞中的癌症细胞表面标志物 Her2。羧酸官能化聚合物也可以通过共价键与小分子功能化分子进行修饰,以生成用于点击化学的生物正交标记的 Pdot 探针。这项研究为进一步开发用于生物应用的功能性 Pdot 探针提供了一种有前途的方法。