Article

Programmed sequential nanostructural conversion at nano-bio interface for synergistic cancer phototheranostics

Shi Sun1, Rui Wang1, Xue-lu-er Mu1, Wen-bi Feng1, Hao Kong1, Ya-jie Li1, Min Gao1, Ying-xi Lu2, Hui-rui Sun3, Xian-feng Zhou1,2
1 College of Material Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, China
2 College of Polymer Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, China
3 Department of Anesthesiology, Qingdao Traditional Chinese Medicine Hospital, Qingdao Hiser Hospital Affiliated of Qingdao University, Qingdao 266000, China
Correspondence to: Ying-xi Lu: yingxi@qust.edu.cn, Hui-rui Sun: sunhuirui12345@163.com, Xian-feng Zhou: xianfeng@qust.edu.cn,
DOI: 10.1038/s41401-025-01609-4
Received: 18 March 2025
Accepted: 6 June 2025
Advance online: 25 July 2025

Abstract

Prodrugs usually convert into active compounds within cells via endogenous or external stimuli to improve the diagnostic accuracy and therapeutic efficacy, but this singular release profile often fails to meet the multifunctional needs of cancer therapeutics. In this study we proposed a strategy of “nanostructural conversion at nano-bio interface” and constructed a small-molecule nanoprodrug (APO-S-Cy7-TCF) for multifunctional anti-tumor phototheranostics. Upon exposure to redox biomolecules (ROS/GSH) in tumor microenvironment, the pristine nanostructure of APO-S-Cy7-TCF disassembled, releasing Cy7-TCF-OH and APO that interacted with heat shock proteins to initiate apoptosis. Cy7-TCF-OH could then re-assemble into smaller nanosaucers with enhanced photothermal properties and self-augmented ROS-generating capacity, enabling synergistic phototherapy for tumor ablation. In particular, Cy7-TCF-OH nanosaucers were long retained in residual tumors and could further interact with albumin to form smaller Cy7-TCF-OH@albumin nanocomposites that time-dependently activated near-infrared fluorescence for prognostic assessment. Using these biomolecule-derived elements to program supramolecular sequential structural conversions at nano-bio interface, our study establishes a new way for small-molecule-based multifunctional phototheranostic platform.
Keywords: supramolecular structural conversion; small-molecule nanoprodrugs (SM-NPs); biomolecules; nano-bio interface; synergistic phototheranostics

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