炎症性肠病
化学
价(化学)
免疫学
疾病
医学
病理
有机化学
作者
Quan Wang,Chaoqun Cheng,Sheng Zhao,Quanyi Liu,Yihong Zhang,Wanling Liu,Xiaozhi Zhao,He Zhang,Jun Pu,Shuo Zhang,Huigang Zhang,Yan Du,Hui Wei
标识
DOI:10.1002/anie.202201101
摘要
Abstract Antioxidant treatment strategy by scavenging reactive oxygen species (ROS) is a highly effective disease treatment option. Nanozymes with multiple antioxidant activities can cope with the diverse ROS environment. However, lack of design strategies and limitation of negative correlation for nanozymes with multiple antioxidant activities hindered their development. To overcome these difficulties, here we used ZnMn 2 O 4 as a model to explore the role of Mn valency at the octahedral site via a valence‐engineered strategy, and found that its multiple antioxidant activities are positively correlated with the content of Mn 4+ . Therefore, through this strategy, a self‐cascading antioxidant nanozyme LiMn 2 O 4 was constructed, and its efficacy was verified at the cellular level and in an inflammatory bowel disease model. This work not only provides guidance for the design of multiple antioxidant nanozymes, but also broadens the biomedical application potential of multiple antioxidant nanozymes.
科研通智能强力驱动
Strongly Powered by AbleSci AI