活性氧
放射治疗
乳酸
肿瘤微环境
化学
癌症研究
过氧化氢
缺氧(环境)
DNA损伤
氧气
生物化学
医学
生物
肿瘤细胞
内科学
DNA
有机化学
细菌
遗传学
作者
Yiran Yao,Ru Xu,Weihuan Shao,Ji Tan,Shaoyun Wang,Shuhan Chen,Ai Zhuang,Xuanyong Liu,Renbing Jia
标识
DOI:10.1002/advs.202403107
摘要
Abstract Uveal melanoma (UM) is a leading intraocular malignancy with a high 5‐year mortality rate, and radiotherapy is the primary approach for UM treatment. However, the elevated lactic acid, deficiency in ROS, and hypoxic tumor microenvironment have severely reduced the radiotherapy outcomes. Hence, this study devised a novel CoMnFe‐layered double oxides (LDO) nanosheet with multienzyme activities for UM radiotherapy enhancement. On one hand, LDO nanozyme can catalyze hydrogen peroxide (H 2 O 2 ) in the tumor microenvironment into oxygen and reactive oxygen species (ROS), significantly boosting ROS production during radiotherapy. Simultaneously, LDO efficiently scavenged lactic acid, thereby impeding the DNA and protein repair in tumor cells to synergistically enhance the effect of radiotherapy. Moreover, density functional theory (DFT) calculations decoded the transformation pathway from lactic to pyruvic acid, elucidating a previously unexplored facet of nanozyme activity. The introduction of this innovative nanomaterial paves the way for a novel, targeted, and highly effective therapeutic approach, offering new avenues for the management of UM and other cancer types.
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