摘要
Osteoarthritis(OA)is always characterized as excessive reactive oxygen species(ROS)inside articular cavity.Mimicking natural metalloenzymes with metal ions as the active centers,stable metal organic framework(MOF)formed by natural polyphenols and metal ions shows great potential in alleviating inflammatory diseases.Herein,a series of novel copper-morin-based MOF(CuMHs)with different molar ratios of Cu^(2+)and MH were employed to serve as ROS scavengers for OA therapy.As a result,CuMHs exhibited enhanced dispersion in aqueous solution,improved biocompatibility,and efficient ROS-scavenging ability compared to MH.On the basis of H_(2)O_(2)-stimulated chondrocytes,intracellular ROS levels were efficiently declined and cell death was prevented after treated by Cu_(6)MH(Cu^(2+)and MH molar ratio of 6:1).Meanwhile,Cu_(6)MH also exhibited efficient antioxidant and anti-inflammation function by down-regulating the expression of IL6,MMP13,and MMP3,and up-regulating cartilage specific gene expression as well.Importantly,Cu_(6)MH could repair mitochondrial function by increasing mitochondrial membrane potential,reducing the accumulation of calcium ions,as well as promoting ATP content production.In OA joint model,intra-articular(IA)injected Cu_(6)MH suppressed the progression of OA.It endowed that Cu_(6)MH might be promising nanoenzymes for the prevention and treatment of various inflammatory diseases.
出处
《Research》
SCIE
EI
CSCD
2023年第4期163-180,共18页
研究(英文)
基金
The work was financially supported by Guangxi Science and Technology Base and Talent Special Project(Grant Nos.GuikeAD21075002 and GuikeAD19254003)
National Natural Science Fund of China(Grant Nos.82160430 and 81960414).