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用于生物成像和治疗的化学发光:最新进展与挑战。

Chemiluminescence for bioimaging and therapeutics: recent advances and challenges.

机构信息

State Key Laboratory of Fine Chemicals, Dalian University of Technology, 2 Linggong Road, 116024 Dalian, China.

出版信息

Chem Soc Rev. 2020 Oct 7;49(19):6800-6815. doi: 10.1039/d0cs00348d. Epub 2020 Sep 15.

Abstract

Chemiluminescence, the generation of light through chemiexcitation as a result of chemical reactions, has emerged as a novel tool for bioimaging and therapy in vivo. Due to the elimination of external optical excitation, it can effectively avoid background autofluorescence existing in fluorescence techniques, providing extremely high signal-to-noise ratios and sensitivity in bioimaging. Furthermore, in situ emitted photons can replace traditional excitation light to construct chemiexcited photodynamic therapy or drug release systems for the monitoring and treatment of deeply seated diseases or tumors. In this tutorial review, we will focus on the recent advancements of chemiluminescent platforms based on luminophore substrates including luminol and its derivatives, cypridina luciferin analogs, peroxyoxalates, and dioxetanes, and systematically summarize the design principles, sensing mechanisms, and bioimaging and therapeutic applications of representative chemiluminescent probes as well as theranostic agents. Finally, the potential challenges and perspectives of chemiluminescent platforms for bioimaging and therapeutics are also discussed.

摘要

化学发光,即化学反应导致的化学激发产生光,已成为体内生物成像和治疗的新工具。由于消除了外部光学激发,它可以有效地避免荧光技术中存在的背景荧光,在生物成像中提供极高的信噪比和灵敏度。此外,原位发射的光子可以替代传统的激发光,构建化学激发的光动力治疗或药物释放系统,用于监测和治疗深部疾病或肿瘤。在本教程综述中,我们将重点介绍基于发光体底物的化学发光平台的最新进展,包括鲁米诺及其衍生物、海萤荧光素类似物、过氧草酸盐和二氧杂环丁烷,并系统总结代表性化学发光探针和治疗剂的设计原理、传感机制以及生物成像和治疗应用。最后,还讨论了化学发光平台在生物成像和治疗方面的潜在挑战和展望。

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