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基于氧化还原活性 AIE 试剂的等离子体和荧光核壳纳米粒子的多模式生物成像。

Redox-Active AIEgen-Derived Plasmonic and Fluorescent Core@Shell Nanoparticles for Multimodality Bioimaging.

机构信息

Department of Chemistry, Hong Kong Branch of Chinese National Engineering Research Centre for Tissue Restoration and Reconstruction, Institute for Advanced Study, Division of Life Science, and Division of Biomedical Engineering , The Hong Kong University of Science and Technology , Clear Water Bay , Kowloon , Hong Kong.

HKUST-Shenzhen Research Institute , Shenzhen , 518057 , China.

出版信息

J Am Chem Soc. 2018 Jun 6;140(22):6904-6911. doi: 10.1021/jacs.8b02350. Epub 2018 May 15.

Abstract

Multimodality imaging is highly desirable for accurate diagnosis by achieving high sensitivity, spatial-temporal resolution, and penetration depth with a single structural unit. However, it is still challenging to integrate fluorescent and plasmonic modalities into a single structure, as they are naturally incompatible because of significant fluorescence quenching by plasmonic noble-metal nanoparticles. Herein, we report a new type of silver@AIEgen (aggregation-induced emission luminogen) core-shell nanoparticle (AACSN) with both strong aggregated-state fluorescence of the AIEgen and distinctive plasmonic scattering of silver nanoparticles for multimodality imaging in living cells and small animals. The AACSNs were prepared through a redox reaction between silver ions and a redox-active AIEgen, which promoted synergistic formation of the silver core and self-assembly of the AIEgen around the core. The resulting AACSNs exhibited good biocompatibility and high resistance to environmental damage. As a result, excellent performance in fluorescence imaging, dark-field microscopy, and X-ray computed tomography-based multimodality imaging was achieved.

摘要

多模态成像是通过单个结构单元实现高灵敏度、时空分辨率和穿透深度的精确诊断的理想方法。然而,将荧光和等离子体模式集成到单个结构中仍然具有挑战性,因为由于等离子体贵金属纳米粒子的显著荧光猝灭,它们在自然状态下是不相容的。在此,我们报告了一种新型的银@聚集诱导发射发光体(AIEgen)核壳纳米粒子(AACSN),它具有 AIEgen 的强聚集态荧光和银纳米粒子的独特等离子体散射,可用于活细胞和小动物的多模态成像。AACSN 是通过银离子和氧化还原活性 AIEgen 之间的氧化还原反应制备的,该反应促进了银核的协同形成和 AIEgen 围绕核心的自组装。所得 AACSN 具有良好的生物相容性和对环境破坏的高抵抗力。因此,在荧光成像、暗场显微镜和基于 X 射线计算机断层扫描的多模态成像方面实现了优异的性能。

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