日耳曼
活性氧
急性肾损伤
体内
抗氧化剂
肾
材料科学
化学
纳米技术
医学
生物化学
生物
内科学
硅烯
生物技术
石墨烯
作者
Zhuo Chen,Fenggang Qi,Wujie Qiu,Chenyao Wu,Ming Zong,Min Ge,Deliang Xu,Yanling You,Ya‐Xuan Zhu,Zhimin Zhang,Han Lin,Jianlin Shi
标识
DOI:10.1002/advs.202202933
摘要
Abstract Acute kidney injury (AKI) is a sudden kidney dysfunction caused by aberrant reactive oxygen species (ROS) metabolism that results in high clinical mortality. The rapid development of ROS scavengers provides new opportunities for AKI treatment. Herein, the use of hydrogen‐terminated germanene (H‐germanene) nanosheets is reported as an antioxidative defense nanoplatform against AKI in mice. The simulation results show that 2D H‐germanene can effectively scavenge ROS through free radical adsorption and subsequent redox reactions. In particular, the H‐germanene exhibits high accumulation in injured kidneys, thereby offering a favorable opportunity for treating renal diseases. In the glycerol‐induced murine AKI model, H‐germanene delivers robust antioxidative protection against ROS attack to maintain normal kidney function indicators without negative influence in vivo. This positive in vivo antioxidative defense in living animals demonstrates that the present H‐germanene nanoplatform is a powerful antioxidant against AKI and various anti‐inflammatory diseases.
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