Coupling photodynamic hypoxia amplification with a self-reporting chemiluminescent prodrug for adaptive precision
Jie Gao1, Lianzhu Wei1, Yujie Wang1
1School of Pharmacy, Key Laboratory of Basic Pharmacology of Ministry of Education and Joint International Research Laboratory of Ethnomedicine of Ministry of Education, Guizhou International Science & Technology Cooperation Base of Medical Optical Theranostics Research, New Drug Discovery and Evaluation Center for International Cooperation and Disciplinary Innovation ("111 Center"), Zunyi Medical University, Zunyi, Guizhou, 563003, China.
Abstract:
Hypoxia is a hallmark of solid tumors that provides a therapeutic window for hypoxia-activated prodrugs (HAPs). However, the therapeutic performance of HAPs is often limited by heterogeneous tumor hypoxia and the lack of real-time feedback on prodrug activation. Herein, we report a self-reporting nanomedicine, CL-Azo-CPT/Ce6 NPs, that integrates hypoxia amplification with chemiluminescent monitoring in a "Sense-Amplify-Report" strategy. The system combines a photosensitizer, chlorin e6 (Ce6), with a hypoxia-responsive chemiluminescent prodrug, CL-Azo-CPT, in which camptothecin (CPT) is linked to a Schaap's dioxetane scaffold through an azobenzene (azo) trigger. Upon irradiation, Ce6-mediated photodynamic therapy consumes local oxygen and aggravates tumor hypoxia, thereby promoting azoreductase-mediated azo cleavage and accelerating CPT release. This activation process is accompanied by chemiluminescence emission, the intensity of which shows a stoichiometric correlation with drug release and thus provides an excitation-free, real-time readout of prodrug activation. In vitro studies and evaluation in a murine peritoneal metastasis model demonstrated enhanced antitumor efficacy, marked tumor regression, and prolonged survival. This work establishes a hypoxia-amplified and self-reporting chemo-photodynamic platform that addresses two central limitations of HAPs, namely insufficient activation and the absence of in vivo activation feedback.


