Donor/π-Bridge Manipulation for Constructing a Stable NIR-II Aggregation-Induced Emission Luminogen with Balanced Phototheranostic Performance*
- PMID: 34626441
- DOI: 10.1002/anie.202111767
Donor/π-Bridge Manipulation for Constructing a Stable NIR-II Aggregation-Induced Emission Luminogen with Balanced Phototheranostic Performance*
Abstract
Owing to their versatile functionality and tunable energy dissipation, aggregation-induced emission luminogens (AIEgens) have emerged as a potential platform for multimodal theranostics. Nevertheless, the construction of AIE-active phototheranostic agents in the second near-infrared window (NIR-II, 1000-1700 nm), which allows superior resolution and minimized photodamage, is still a formidable challenge. Herein, benzo[c]thiophene serves as an electron-rich and bulky donor (D)/π-bridge, which can enlarge the conjugation length and distort the backbone of an AIEgen. By precise D/π-bridge engineering, highly stable NIR-II AIEgen DPBTA-DPTQ nanoparticles are obtained with acceptable NIR-II fluorescence quantum yield and excellent photothermal conversion efficiency. In addition, the spatial conformation of DPBTA-DPTQ is determined for the first time by X-ray single crystal diffraction and theoretical simulations. DPBTA-DPTQ NPs have good biocompatibility and show efficient photothermal therapeutic effects in in vitro tests. Furthermore, DPBTA-DPTQ NPs were used in fluorescence-photoacoustic-photothermal trimodal imaging-guided photothermal eradication of tumors in HepG2 and B16-F10 tumor-xenografted mice.
Keywords: NIR-II AIEgens; benzo[c]thiophene; donor-acceptor systems; phototheranostics.
© 2021 Wiley-VCH GmbH.
References
-
- K. K. Ng, G. Zheng, Chem. Rev. 2015, 115, 11012-11042.
-
- H. Chen, W. Zhang, G. Zhu, J. Xie, X. Chen, Nat. Rev. Mater. 2017, 2, 17024.
-
- S. He, J. Song, J. Qu, Z. Cheng, Chem. Soc. Rev. 2018, 47, 4258-4278.
-
- B. R. Smith, S. S. Gambhir, Chem. Rev. 2017, 117, 901-986.
-
- M. Kang, Z. Zhang, N. Song, M. Li, P. Sun, X. Chen, D. Wang, B. Z. Tang, Aggregate 2020, 1, 80-106.
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- 2019M663030/Postdoctoral Research Foundation of China
- 52122317/National Natural Science Foundation of China
- 22175120/National Natural Science Foundation of China
- RCYX20200714114525101/Developmental Fund for Science and Technology of Shenzhen government
- JCYJ20190808153415062/Developmental Fund for Science and Technology of Shenzhen government
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