血管翳
光催化
软骨
关节炎
纳米棒
细胞生物学
类风湿性关节炎
炎症
活性氧
化学
癌症研究
医学
材料科学
免疫学
纳米技术
催化作用
生物化学
生物
解剖
作者
Bin Zhao,Lingting Zeng,Danyang Chen,Songqing Xie,Zhaokui Jin,Guanglin Li,Wei Tang,Qianjun He
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2022-10-05
卷期号:8 (40)
被引量:26
标识
DOI:10.1126/sciadv.abq0959
摘要
Synovial microenvironment (SME) plays a vital role in the formation of synovial pannus and the induction of cartilage destruction in arthritis. In this work, a concept of the photocatalytic regulation of SME is proposed for arthritis treatment, and monodispersive hydrogen-doped titanium dioxide nanorods with a rutile single-crystal structure are developed by a full-solution method to achieve near infrared-photocatalytic generation of hydrogen molecules and simultaneous depletion of overexpressed lactic acid (LA) for realizing SME regulation in a collagen-induced mouse model of rheumatoid arthritis. Mechanistically, locally generated hydrogen molecules scavenge overexpressed reactive oxygen species to mediate the anti-inflammatory polarization of macrophages, while the simultaneous photocatalytic depletion of overexpressed LA inhibits the inflammatory/invasive phenotypes of synoviocytes and macrophages and ameliorates the abnormal proliferation of synoviocytes, thereby remarkably preventing the synovial pannus formation and cartilage destruction. The proposed catalysis-mediated SME regulation strategy will open a window to realize facile and efficient arthritis treatment.
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