Fast Delivery of Multifunctional NIR‐II Theranostic Nanoaggregates Enabled by the Photoinduced Thermoacoustic Process

Author:

Xie Huilin1ORCID,Zhang Chen12,Li Tingting2,Hu Lianrui1,Zhang Jianquan1,Guo Heng2,Liu Zhao2,Peng Dinglu2,Li Zeshun2,Wu Weijun2,Gao Ji2,Bi Zhenyu2,Wang Jinghan2,Zhang Pengfei3,Kwok Ryan T. K.1,Lam Jacky W. Y.1,Guo Zhihong1,Xi Lei2,Li Kai2,Tang Ben Zhong145ORCID

Affiliation:

1. Department of Chemistry Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction The Hong Kong University of Science and Technology (HKUST) Clear Water Bay Kowloon Hong Kong 999077 China

2. Shenzhen Key Laboratory of Smart Healthcare Engineering Guangdong Provincial Key Laboratory of Advanced Biomaterials Department of Biomedical Engineering Southern University of Science and Technology (SUSTech) Shenzhen Guangdong 518055 China

3. Guangdong Key Laboratory of Nanomedicine Shenzhen Engineering Laboratory of Nanomedicine and Nanoformulations CAS‐HK Joint Lab for Biomaterials Research Laboratory for Biomedical Optics and Molecular Imaging Shenzhen Key Laboratory for Molecular Imaging CAS Key Lab for Health Informatics Shenzhen Institutes of Advanced Technology Chinese Academy of Sciences Shenzhen Guangdong 518055 China

4. School of Science and Engineering Shenzhen Institute of Aggregate Science and Technology The Chinese University of Hong Kong Shenzhen Guangdong 518172 China

5. Center for Aggregation‐Induced Emission South China University of Technology (SCUT) Guangzhou Guangdong 510640 China

Abstract

AbstractMultifunctional nanoaggregates are widely used in cancer phototheranostics. However, it is challenging to construct their multifunctionality with a single component, and deliver them rapidly and efficiently without complex modifications. Herein, a NIR‐absorbing small molecule named TBT‐2(TP‐DPA) is designed and certify its theranostic potentials. Then, their nanoaggregates, which are simply encapsulated by DSPE‐PEG, demonstrate a photothermal efficiency of 51% while keeping a high photoluminescence quantum yield in the NIR region. Moreover, the nanoaggregates can be excited and delivered by an 808 nm pulse laser to solid tumors within only 40 min. The delivery efficiency and theranostic efficacy are better than that of the traditional enhanced permeability and retention (EPR) effect (generally longer than 24 hours). This platform is first termed as the photoinduced thermoacoustic (PTA) process, and confirm its application requires both NIR‐responsive materials and pulse laser irradiation. This study not only inspires the design of multifunctional nanoaggregates, but also offers a feasible approach to their fast delivery. The platform reported here provides a promising prospect to boost the development of multifunctional theranostic drugs and maximize the efficacy of used medicines for their clinical applications.

Funder

National Natural Science Foundation of China

Innovation and Technology Commission

Guangdong Science and Technology Department

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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