Anti‐Quenching NIR‐II J‐Aggregates of Benzo[c]thiophene Fluorophore for Highly Efficient Bioimaging and Phototheranostics

Author:

Lee Ka‐Wai1,Gao Yijian2,Wei Wei‐Chih3,Tan Ji‐Hua1,Wan Yingpeng1,Feng Zhe4,Zhang Yuhuang4,Liu Ying2,Zheng Xiuli5,Cao Chen1,Chen Huan1,Wang Pengfei5,Li Shengliang2,Wong Ken‐Tsung36,Lee Chun‐Sing1ORCID

Affiliation:

1. Joint Laboratory of Nano‐organic Functional Materials and Devices (TIPC and CityU) Center of Super‐Diamond and Advanced Films (COSDAF) Department of Chemistry City University of Hong Kong 83 Tat Chee Avenue Kowloon Hong Kong SAR P. R. China

2. College of Pharmaceutical Sciences Soochow University Suzhou 215123 P. R. China

3. Department of Chemistry National Taiwan University Taipei 10617 Taiwan

4. State Key Laboratory of Modern Optical Instrumentations Centre for Optical and Electromagnetic Research College of Optical Science and Engineering International Research Center for Advanced Photonics Zhejiang University Hangzhou 310058 P. R. China

5. Technical Institute of Physics and Chemistry Chinese Academy of Sciences Beijing 100190 P. R. China

6. Institute of Atomic and Molecular Science Academia Sinica Taipei 10617 Taiwan

Abstract

AbstractMolecular fluorophores with the second near‐infrared (NIR‐II) emission hold great potential for deep‐tissue bioimaging owing to their excellent biocompatibility and high resolution. Recently, J‐aggregates are used to construct long‐wavelength NIR‐II emitters as their optical bands show remarkable red shifts upon forming water‐dispersible nano‐aggregates. However, their wide applications in the NIR‐II fluorescence imaging are impeded by the limited varieties of J‐type backbone and serious fluorescence quenching. Herein, a bright benzo[c]thiophene (BT) J‐aggregate fluorophore (BT6) with anti‐quenching effect is reported for highly efficient NIR‐II bioimaging and phototheranostics. The BT fluorophores are manipulated to have Stokes shift over 400 nm and aggregation‐induced emission (AIE) property for conquering the self‐quenching issue of the J‐type fluorophores. Upon forming BT6 assemblies in an aqueous environment, the absorption over 800 nm and NIR‐II emission over 1000 nm are boosted for more than 41 and 26 folds, respectively. In vivo visualization of the whole‐body blood vessel and imaging‐guided phototherapy results verify that BT6 NPs are excellent agent for NIR‐II fluorescence imaging and cancer phototheranostics. This work develops a strategy to construct bright NIR‐II J‐aggregates with precisely manipulated anti‐quenching properties for highly efficient biomedical applications.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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