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基于苯并双噻二唑的小分子近红外二区荧光团:从分子工程到纳米光诊疗

Benzobisthiadiazole-Based Small Molecular Near-Infrared-II Fluorophores: From Molecular Engineering to Nanophototheranostics.

作者信息

Wang Leichen, Li Na, Wang Weili, Mei Anqing, Shao Jinjun, Wang Wenjun, Dong Xiaochen

机构信息

Key Laboratory of Flexible Electronics (KLOFE) & Institute of Advanced Materials (IAM), Nanjing Tech University (NanjingTech), Nanjing 211816, China.

School of Physicals and Information Technology, Liaocheng University, Liaocheng 252059, China.

出版信息

ACS Nano. 2024 Feb 13;18(6):4683-4703. doi: 10.1021/acsnano.3c12316. Epub 2024 Jan 31.

Abstract

Organic fluorescent molecules with emission in the second near-infrared (NIR-II) biological window have aroused increasing investigation in cancer phototheranostics. Among these studies, Benzobisthiadiazole (BBT), with high electron affinity, is widely utilized as the electron acceptor in constructing donor-acceptor-donor (D-A-D) structured fluorophores with intensive near-infrared (NIR) absorption and NIR-II fluorescence. Until now, numerous BBT-based NIR-II dyes have been employed in tumor phototheranostics due to their exceptional structure tunability, biocompatibility, and photophysical properties. This review systematically overviews the research progress of BBT-based small molecular NIR-II dyes and focuses on molecule design and bioapplications. First, the molecular engineering strategies to fine-tune the photophysical properties in constructing the high-performance BBT-based NIR-II fluorophores are discussed in detail. Then, their biological applications in optical imaging and phototherapy are highlighted. Finally, the current challenges and future prospects of BBT-based NIR-II fluorescent dyes are also summarized. This review is believed to significantly promote the further progress of BBT-derived NIR-II fluorophores for cancer phototheranostics.

摘要

在生物医学窗口的第二近红外(NIR-II)区域发光的有机荧光分子在癌症光诊疗领域引起了越来越多的研究。在这些研究中,具有高电子亲和力的苯并双噻二唑(BBT)被广泛用作电子受体,用于构建具有强烈近红外(NIR)吸收和NIR-II荧光的供体-受体-供体(D-A-D)结构荧光团。到目前为止,许多基于BBT的NIR-II染料因其出色的结构可调节性、生物相容性和光物理性质而被应用于肿瘤光诊疗。本综述系统地概述了基于BBT的小分子NIR-II染料的研究进展,并重点关注分子设计和生物应用。首先,详细讨论了在构建高性能基于BBT的NIR-II荧光团时微调光物理性质的分子工程策略。然后,突出了它们在光学成像和光疗中的生物应用。最后,还总结了基于BBT的NIR-II荧光染料当前面临的挑战和未来前景。本综述相信将显著推动基于BBT的NIR-II荧光团在癌症光诊疗方面的进一步发展。

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