Dual-Mode Reactive Oxygen Species-Stimulated Carbon Monoxide Release for Synergistic Photodynamic and Gas Tumor Therapy
作者:Yuewen Yu, Le Zhang, Hanyu Jia, Chao Ji, Yucheng Liu, Zexian Zhao, Chunhui Dai, Dan Ding, Ben Zhong Tang, Guangxue Feng · 发表于:ACS Nano · 年份:2024 · DOI:10.1021/acsnano.4c10277 · 被引用次数:47 · 研究领域:Nanoplatforms for cancer theranostics、Heme Oxygenase-1 and Carbon Monoxide、Photodynamic Therapy Research Studies
Controllable carbon monoxide (CO) release simulated by light-generated reactive oxygen species (ROS) represents a promising approach for cancer therapy but is hampered by low CO release rate and low ROS generation of conventional photosensitizers in hypoxia tumor microenvironments. In this study, we developed a highly efficient nanoplatform (TPyNO 2 –FeCO NPs) through co-encapsulating organic AIE photosensitizers (PSs) and CO prodrug (Fe 3 (CO) 12 ), which are capable of light-triggered robust ROS generation and CO release for synergistic photodynamic therapy (PDT) and CO gas therapy. The success of this nanoplatform leverages the design of a PS, TPyNO 2, with exceptional type I and type II ROS generation capabilities, achieved through the introduction of the α-photoinduced electron transfer (α-PET) process. With the incorporation of a 4-nitrobenzyl unit as a typical PET donor, the intramolecular α-PET process not only suppresses the radiative decay to redirect the excited-state energy to intersystem crossing for more triplet-state formation but also promotes electron separation and transfer processes for radical-type ROS generation. The resultant TPyNO 2 demonstrates superior singlet oxygen, superoxide anion, and hydroxyl radial generation capabilities in the aggregate state. Upon light irradiation, TPyNO 2 –FeCO NPs release CO via the type I and type II dual-mode ROS-mediated processes in a controlled and targeted manner, overcoming the limitations of conventional CO releas...