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Pre- and Postfunctionalized Self-Assembled π-Conjugated Fluorescent Organic Nanoparticles for Dual Targeting

机译:前和后功能自组装的π共轭荧光有机纳米粒子的双重目标。

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摘要

There is currently a high demand for novel approaches to engineer fluorescent nanoparticles with precise surface properties suitable for various applications, including imaging and sensing. To this end, we report a facile and highly reproducible one-step method for generating functionalized fluorescent organic nanoparticles via self-assembly of prefunc-tionalized π-conjugated oligomers. The engineered design of the nonionic amphiphilic oligomers enables the introduction of different ligands at the extremities of inert ethylene glycol side chains without interfering with the self-assembly process. The intrinsic fluorescence of the nanoparticles permits the measure- ment of their surface properties and binding to dye-labeled target molecules via Forster resonance energy transfer (FRET). Co-assembly of differently functionalized oligomers is also demonstrated, which enables the tuning of ligand composition and density. Furthermore, nanoparticle prefunctionalization has been combined with subsequent postmodification of azide-bearing oligomers via click chemistry. This allows for expanding ligand diversity at two independent stages in the nanoparticle fabrication process. The practicability of the different methods entails greater control over surface functionality. Through labeling with different ligands, selective binding of proteins, bacteria, and functionalized beads to the nanoparticles has been achieved. This, in combination with the absence of unspecific adsorption, clearly demonstrates the broad potential of these nanoparticles for selective targeting and sequestration. Therefore, controlled bifunctionalization of fluorescent π-conjugated oligomer nanoparticles represents a novel approach with high applicability to multitargeted imaging and sensing in biology and medicine.
机译:当前,迫切需要新颖的方法来工程化具有适合各种应用(包括成像和传感)的精确表面特性的荧光纳米粒子。为此,我们报告了一种通过功能化的π共轭低聚物的自组装生成功能化荧光有机纳米粒子的简便且高度可重复的一步方法。非离子两亲性低聚物的工程设计使得能够在惰性乙二醇侧链的末端引入不同的配体,而不会干扰自组装过程。纳米粒子的固有荧光可以测量其表面性质,并通过Forster共振能量转移(FRET)与染料标记的目标分子结合。还展示了不同功能化的低聚物的共组装,这使得能够调节配体组成和密度。此外,纳米颗粒的预功能化已通过点击化学与随后的含叠氮化物的低聚物的后修饰结合在一起。这允许在纳米颗粒制造过程中的两个独立阶段扩展配体多样性。不同方法的实用性要求对表面功能进行更大的控制。通过用不同的配体标记,已经实现了蛋白质,细菌和功能化微珠与纳米颗粒的选择性结合。这与不存在非特异性吸附的结合清楚地证明了这些纳米颗粒对于选择性靶向和螯合的广泛潜力。因此,荧光π共轭低聚物纳米粒子的受控双功能化代表了一种新方法,对生物学和医学中的多目标成像和传感具有高度适用性。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2011年第42期|p.17063-17071|共9页
  • 作者单位

    Laboratory of Chemical Biology, Eindhoven University of Technology, Den Dolech 2, 5612 AZ Eindhoven, The Netherlands;

    Laboratory of Functional Organic Materials and Devices, Eindhoven University of Technology, Den Dolech 2, 5612 AZ Eindhoven, The Netherlands;

    Laboratory of Functional Organic Materials and Devices, Eindhoven University of Technology, Den Dolech 2, 5612 AZ Eindhoven, The Netherlands;

    Laboratory of Chemical Biology, Eindhoven University of Technology, Den Dolech 2, 5612 AZ Eindhoven, The Netherlands;

    Laboratory of Functional Organic Materials and Devices, Eindhoven University of Technology, Den Dolech 2, 5612 AZ Eindhoven, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:14:31

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