In recent years, heavy-atom-free photosensitizers have been recognized as an important class of agents for photodynamic therapy (PDT). In particular, redox-activated heavy-atom-free photosensitizers inspired by the redox imbalance of the tumor microenvironment are emerging as a promising strategy to improve the specificity and therapeutic efficiency of PDT. This review highlights design strategies of redox-activated heavy-atom-free photosensitizers (PSs), including donor-acceptor-based frameworks, thionation, aggregation-induced emission (AIE) driven intersystem crossing enhancement, and the integration of responsive moieties for reactive oxygen species (ROS), glutathione (GSH), cysteine (Cys), and hydrogen sulfide (H₂S). In addition, recent advances in the development of redox-activated heavy-atom-free PSs over the past three years are summarized. Finally, main challenges, including hypoxic tumors, limited tumor-targeting efficiency, and limited light penetration into deep-seated tumors, as well as future prospects for this field, are discussed.
Hyunsun Jeong, Hao-Yang Song, V. Nguyen et al.· Advanced Drug Delivery Revie...· 1 citation
This review systematically surveys multimodal platforms that integrate PDT/PTT with chemodynamic therapy (CDT), sonodynamic therapy (SDT), gas therapy, antibiotics, and immunotherapy and highlights the rational design of nanomaterials that enable both reactive oxygen species (ROS) generation and photothermal conversion, thereby overcoming monotherapy limitations.
Hongchen Zhai, Liying Lv, Hanqi Ren et al.· Chemical Society Reviews· 2 citations
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