活性氧
锰
介孔材料
清除
介孔二氧化硅
催化作用
Zeta电位
纳米材料
细胞内
材料科学
纳米颗粒
化学
生物物理学
化学工程
核化学
生物化学
纳米技术
有机化学
抗氧化剂
工程类
生物
作者
Yi Xiong,Yi Zhang,Changren Zhou,Changyuan Yu
标识
DOI:10.1016/j.apt.2022.103886
摘要
Reactive oxygen species (ROS) are reactive substances closely related to the inflammatory response, and previous studies have shown that anti-inflammatory therapy can achieve significant effects by scavenging ROS. Nanozymes are synthetic mimics of natural enzymes that are more stable, customizable, inexpensive, and catalytic for ROS. Therefore, we prepared a novel manganese-loaded mesoporous silica nanozyme (MnMSN) by template method and KMnO4 oxidation surfactant templates. The physicochemical properties of the nanomaterials were investigated by XRD, TEM, SEM, size, Zeta potential and BET, etc. The results showed that MnMSN contains MnO2 (Mn4+) and MnSiO3 (Mn2+), and the particle size of MnMSN is smaller with the increase of KMnO4 oxidation surfactant templates time, and the in vitro scavenging of ROS (H2O2, ·OH and ·O2–) is more effective. MnMSN has good cytocompatibility, scavenging intracellular ROS and inducing a shift from M1 to anti-inflammatory M2 phenotype. Furthermore, the intrinsic mechanism of MnMSN regulation of macrophage polarization was investigated by ELISA and qPCR, and the results showed that MnMSN is through scavenging ROS, leading to the down-regulation of NF-κB, which further leads to the down-regulation of TNF-α and IL-Iβ. The results of this work highlight the potential of MnMSN in catalyzing anti-inflammatory therapy.
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