Please use this identifier to cite or link to this item: https://hdl.handle.net/10356/179032
Title: Leveraging long-distance singlet-oxygen transfer for bienzyme-locked afterglow imaging of intratumoral granule enzymes
Authors: Wei, Xin
Xu, Cheng
Cheng, Penghui
Hu, Yuxuan
Liu, Jing
Xu, Mengke
Huang, Jingsheng
Zhang, Yan
Pu, Kanyi
Keywords: Medicine, Health and Life Sciences
Issue Date: 2024
Source: Wei, X., Xu, C., Cheng, P., Hu, Y., Liu, J., Xu, M., Huang, J., Zhang, Y. & Pu, K. (2024). Leveraging long-distance singlet-oxygen transfer for bienzyme-locked afterglow imaging of intratumoral granule enzymes. Journal of the American Chemical Society, 146(25), 17393-17403. https://dx.doi.org/10.1021/jacs.4c05012
Project: NRF-NRFI07-2021-0005 
MOE-T2EP30220-0010 
MOE-T2EP30221-0004 
Journal: Journal of the American Chemical Society 
Abstract: Dual-locked activatable optical probes, leveraging the orthogonal effects of two biomarkers, hold great promise for the specific imaging of biological processes. However, their design approaches are limited to a short-distance energy or charge transfer mechanism, while the signal readout relies on fluorescence, which inevitably suffers from tissue autofluorescence. Herein, we report a long-distance singlet oxygen transfer approach to develop a bienzyme-locked activatable afterglow probe (BAAP) that emits long-lasting self-luminescence without real-time light excitation for the dynamic imaging of an intratumoral granule enzyme. Composed of an immuno-biomarker-activatable singlet oxygen (1O2) donor and a cancer-biomarker-activatable 1O2 acceptor, BAAP is initially nonafterglow. Only in the presence of both immune and cancer biomarkers can 1O2 be generated by the activated donor and subsequently diffuse toward the activated acceptor, resulting in bright near-infrared afterglow with a high signal-to-background ratio and specificity toward an intratumoral granule enzyme. Thus, BAAP allows for real-time tracking of tumor-infiltrating cytotoxic T lymphocytes, enabling the evaluation of cancer immunotherapy and the differentiation of tumor from local inflammation with superb sensitivity and specificity, which are unachievable by single-locked probes. Thus, this study not only presents the first dual-locked afterglow probe but also proposes a new design way toward dual-locked probes via reactive oxygen species transfer processes.
URI: https://hdl.handle.net/10356/179032
ISSN: 0002-7863
DOI: 10.1021/jacs.4c05012
Schools: School of Chemistry, Chemical Engineering and Biotechnology 
Lee Kong Chian School of Medicine (LKCMedicine) 
Rights: © 2024 American Chemical Society. All rights reserved. This article may be downloaded for personal use only. Any other use requires prior permission of the copyright holder. The Version of Record is available online at http://doi.org/10.1021/jacs.4c05012.
Fulltext Permission: embargo_20250703
Fulltext Availability: With Fulltext
Appears in Collections:CCEB Journal Articles

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