化学
活性氧
体内
分子内力
辐照
纳米颗粒
氧气
生物物理学
立体化学
纳米技术
有机化学
生物化学
物理
生物技术
生物
核物理学
材料科学
作者
Lin Kang,Hongyou Zhao,Shiyang Liu,Yupeng Liu,Yidi Liu,Defu Chen,Haixia Qiu,Jian Yang,Ying Gu,Yuxia Zhao
标识
DOI:10.1016/j.ejmech.2022.114669
摘要
In the reported mechanisms of reversible photoacidity, protons were dissociated from compounds which contained hydroxyl, indazole or formed hydroxyl via intramolecular hydrogen abstraction under irradiation. Herein, a water-dependent reversible photoacidity (W-RPA) mechanism mediated by a thiadiazoloquinoxaline compound (TQs-Th-PEG5) has been found, in which the proton is not dissociated from TQs-Th-PEG5 itself but from a water locked by TQs-Th-PEG5 under the irradiation of a 660 nm laser. After turning off the laser, the produced acid will disappear quickly. This process is repeatable with no consumption of TQs-Th-PEG5. More importantly, water is indispensable. Furthermore, it is confirmed that there is no other element involved in the process except TQs-Th-PEG5, light and water. Excitingly, W-RPA therapy mediated by TQs-Th-PEG5 nanoparticle exhibits remarkable antitumor effect both in vitro and in vivo, especially in hypoxic tumors with diameter larger than 10 mm owing to its oxygen-independent feature. This study not only discovers a W-RPA mechanism but also provides a novel phototherapy strategy for cancer treatment.
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