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Review

Type I Photosensitizers Based on Aggregation-Induced Emission: A Rising Star in Photodynamic Therapy

1
Center for AIE Research, Shenzhen Key Laboratory of Polymer Science and Technology, Guangdong Research Center for Interfacial Engineering of Functional Materials, College of Materials Science and Engineering, Shenzhen University, Shenzhen 518060, China
2
School of Science and Engineering, Shenzhen Institute of Aggregate Science and Technology, The Chinese University of Hong Kong, Shenzhen 518172, China
*
Authors to whom correspondence should be addressed.
These authors contributed equally to this work.
Biosensors 2022, 12(9), 722; https://doi.org/10.3390/bios12090722
Submission received: 30 July 2022 / Revised: 26 August 2022 / Accepted: 1 September 2022 / Published: 4 September 2022

Abstract

Photodynamic therapy (PDT), emerging as a minimally invasive therapeutic modality with precise controllability and high spatiotemporal accuracy, has earned significant advancements in the field of cancer and other non-cancerous diseases treatment. Thereinto, type I PDT represents an irreplaceable and meritorious part in contributing to these delightful achievements since its distinctive hypoxia tolerance can perfectly compensate for the high oxygen-dependent type II PDT, particularly in hypoxic tissues. Regarding the diverse type I photosensitizers (PSs) that light up type I PDT, aggregation-induced emission (AIE)-active type I PSs are currently arousing great research interest owing to their distinguished AIE and aggregation-induced generation of reactive oxygen species (AIE-ROS) features. In this review, we offer a comprehensive overview of the cutting-edge advances of novel AIE-active type I PSs by delineating the photophysical and photochemical mechanisms of the type I pathway, summarizing the current molecular design strategies for promoting the type I process, and showcasing current bioapplications, in succession. Notably, the strategies to construct highly efficient type I AIE PSs were elucidated in detail from the two aspects of introducing high electron affinity groups, and enhancing intramolecular charge transfer (ICT) intensity. Lastly, we present a brief conclusion, and a discussion on the current limitations and proposed opportunities.
Keywords: aggregation-induced emission; type I photosensitizers; phototheranostics aggregation-induced emission; type I photosensitizers; phototheranostics

Share and Cite

MDPI and ACS Style

Li, D.; Liu, P.; Tan, Y.; Zhang, Z.; Kang, M.; Wang, D.; Tang, B.Z. Type I Photosensitizers Based on Aggregation-Induced Emission: A Rising Star in Photodynamic Therapy. Biosensors 2022, 12, 722. https://doi.org/10.3390/bios12090722

AMA Style

Li D, Liu P, Tan Y, Zhang Z, Kang M, Wang D, Tang BZ. Type I Photosensitizers Based on Aggregation-Induced Emission: A Rising Star in Photodynamic Therapy. Biosensors. 2022; 12(9):722. https://doi.org/10.3390/bios12090722

Chicago/Turabian Style

Li, Danxia, Peiying Liu, Yonghong Tan, Zhijun Zhang, Miaomiao Kang, Dong Wang, and Ben Zhong Tang. 2022. "Type I Photosensitizers Based on Aggregation-Induced Emission: A Rising Star in Photodynamic Therapy" Biosensors 12, no. 9: 722. https://doi.org/10.3390/bios12090722

APA Style

Li, D., Liu, P., Tan, Y., Zhang, Z., Kang, M., Wang, D., & Tang, B. Z. (2022). Type I Photosensitizers Based on Aggregation-Induced Emission: A Rising Star in Photodynamic Therapy. Biosensors, 12(9), 722. https://doi.org/10.3390/bios12090722

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