活性氧
氢氧化物
过氧化氢
铈
插层(化学)
食腐动物
材料科学
纳米颗粒
层状双氢氧化物
化学
核化学
化学工程
纳米技术
无机化学
生物化学
激进的
工程类
作者
Thanh-Truc Nguyen,Gábor Varga,Jessica R. Pickett,Miaomiao Wu,Hang T. Ta,Zhi Ping Xu,Run Zhang
摘要
Nanoceria has been studies for many decades given its capability in quenching reactive oxygen species (ROS) in inflammatory diseases. The regenerative exchanges between Ce3+ and Ce4+ as well as the ratio between these two cations have been reported as one of the most important factors for enhancing their ROS scavenging activity. In this study, a novel method for increasing the active sites and the ratio of Ce3+/Ce4+ utilising layered double hydroxides (LDH) nano system has been developed. Ce doped LDH nanoparticles with various Ce-loading amounts were prepared, and the physicochemical properties were characterised. The anti-hydrogen peroxide (H2O2) capability of these Ce-LDH NPs has been evaluated in vitro against the treated RAW 264.7 macrophages. The optimal Ce-LDH NPs were then introduced into a 3D cell-hydrogel construct resembling the pathological morphology of atherosclerosis to investigate their ability to capture ROS in a more complex cell system. The successful development of this Ce-doped LDH nanosystem provides a promising biocompatible agent for future treatment of inflammatory disorders.
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