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Rational Design of High-Performance Hemithioindigo-Based Photoswitchable AIE Photosensitizer and Enabling Reversible Control Singlet Oxygen Generation

A photosensitizer furnishing with reversible control singlet oxygen generation ((1)O(2)) is highly desirable for precise photodynamic therapy (PDT), lessening non-specific harm to healthy tissues. Here, a novel photoswitchable aggregation-induced emission (AIE) photosensitizer based on a triarylamin...

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Autores principales: Wang, Junjie, Wei, Jianshuang, Leng, Yuehong, Dai, Yanfeng, Xie, Changqiang, Zhang, Zhihong, Zhu, Mingqiang, Peng, Xingzhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10046834/
https://www.ncbi.nlm.nih.gov/pubmed/36979535
http://dx.doi.org/10.3390/bios13030324
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author Wang, Junjie
Wei, Jianshuang
Leng, Yuehong
Dai, Yanfeng
Xie, Changqiang
Zhang, Zhihong
Zhu, Mingqiang
Peng, Xingzhou
author_facet Wang, Junjie
Wei, Jianshuang
Leng, Yuehong
Dai, Yanfeng
Xie, Changqiang
Zhang, Zhihong
Zhu, Mingqiang
Peng, Xingzhou
author_sort Wang, Junjie
collection PubMed
description A photosensitizer furnishing with reversible control singlet oxygen generation ((1)O(2)) is highly desirable for precise photodynamic therapy (PDT), lessening non-specific harm to healthy tissues. Here, a novel photoswitchable aggregation-induced emission (AIE) photosensitizer based on a triarylamine (TPA)-modified hemithioindigo (HTI), 6Br-HTI-TPA-OMe, was rationally designed. The triarylamine AIE photosensitizing moiety and HTI switch unit were covalently linked in one molecule, permitting reversible regulation of (1)O(2) production. The photophysical evaluations revealed that 6Br-HTI-TPA-OMe possessed excellent AIE properties and Z/E photoswitch performance in different solvents. Additionally, the amphiphilic phospholipid-fabricated nanoparticles (NPs) also exhibited photochromic behavior in water. The Z-NPs initiated the generation of (1)O(2) upon 520 nm light-emitting diode (LED) irradiation, but after switching to E-NPs, the generation of (1)O(2) was inhibited by the competitive energy transfer, suggesting that reversible Z/E isomerization could photocontrol (1)O(2) generation. The in vitro anti-tumor experiment verified that the 6Br-HTI-TPA-OMe can act as a photoswitchable AIE photosensitizer. This is the first report on the photoswitchable AIE photosensitizer of HTI-based molecules, to the best of our knowledge.
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spelling pubmed-100468342023-03-29 Rational Design of High-Performance Hemithioindigo-Based Photoswitchable AIE Photosensitizer and Enabling Reversible Control Singlet Oxygen Generation Wang, Junjie Wei, Jianshuang Leng, Yuehong Dai, Yanfeng Xie, Changqiang Zhang, Zhihong Zhu, Mingqiang Peng, Xingzhou Biosensors (Basel) Communication A photosensitizer furnishing with reversible control singlet oxygen generation ((1)O(2)) is highly desirable for precise photodynamic therapy (PDT), lessening non-specific harm to healthy tissues. Here, a novel photoswitchable aggregation-induced emission (AIE) photosensitizer based on a triarylamine (TPA)-modified hemithioindigo (HTI), 6Br-HTI-TPA-OMe, was rationally designed. The triarylamine AIE photosensitizing moiety and HTI switch unit were covalently linked in one molecule, permitting reversible regulation of (1)O(2) production. The photophysical evaluations revealed that 6Br-HTI-TPA-OMe possessed excellent AIE properties and Z/E photoswitch performance in different solvents. Additionally, the amphiphilic phospholipid-fabricated nanoparticles (NPs) also exhibited photochromic behavior in water. The Z-NPs initiated the generation of (1)O(2) upon 520 nm light-emitting diode (LED) irradiation, but after switching to E-NPs, the generation of (1)O(2) was inhibited by the competitive energy transfer, suggesting that reversible Z/E isomerization could photocontrol (1)O(2) generation. The in vitro anti-tumor experiment verified that the 6Br-HTI-TPA-OMe can act as a photoswitchable AIE photosensitizer. This is the first report on the photoswitchable AIE photosensitizer of HTI-based molecules, to the best of our knowledge. MDPI 2023-02-27 /pmc/articles/PMC10046834/ /pubmed/36979535 http://dx.doi.org/10.3390/bios13030324 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Wang, Junjie
Wei, Jianshuang
Leng, Yuehong
Dai, Yanfeng
Xie, Changqiang
Zhang, Zhihong
Zhu, Mingqiang
Peng, Xingzhou
Rational Design of High-Performance Hemithioindigo-Based Photoswitchable AIE Photosensitizer and Enabling Reversible Control Singlet Oxygen Generation
title Rational Design of High-Performance Hemithioindigo-Based Photoswitchable AIE Photosensitizer and Enabling Reversible Control Singlet Oxygen Generation
title_full Rational Design of High-Performance Hemithioindigo-Based Photoswitchable AIE Photosensitizer and Enabling Reversible Control Singlet Oxygen Generation
title_fullStr Rational Design of High-Performance Hemithioindigo-Based Photoswitchable AIE Photosensitizer and Enabling Reversible Control Singlet Oxygen Generation
title_full_unstemmed Rational Design of High-Performance Hemithioindigo-Based Photoswitchable AIE Photosensitizer and Enabling Reversible Control Singlet Oxygen Generation
title_short Rational Design of High-Performance Hemithioindigo-Based Photoswitchable AIE Photosensitizer and Enabling Reversible Control Singlet Oxygen Generation
title_sort rational design of high-performance hemithioindigo-based photoswitchable aie photosensitizer and enabling reversible control singlet oxygen generation
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10046834/
https://www.ncbi.nlm.nih.gov/pubmed/36979535
http://dx.doi.org/10.3390/bios13030324
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