纳米器件
下调和上调
体内
促炎细胞因子
材料科学
类风湿性关节炎
炎症
U937电池
癌症研究
缺氧(环境)
纳米技术
体外
医学
氧气
免疫学
生物
化学
生物化学
生物技术
有机化学
基因
作者
Mingming Guo,Shuchao Wang,Qinglu Guo,Bei Hou,Tao Yue,Dong Ming,Bin Zheng
标识
DOI:10.1021/acsami.0c20514
摘要
The expression of hypoxia-inducible factor-1α (HIF-1α) is upregulated in hypoxic environments at the lesions of rheumatoid arthritis (RA), which promoted the polarization of proinflammatory M1 macrophages and inhibited the differentiation of anti-inflammatory M2 to deteriorate synovial inflammation. Since oxygen scarcity at the joints causes an imbalance of macrophages M1 and M2, herein, we designed a cyanobacteria micro-nanodevice that can be spatiotemporally controlled in vivo to continuously producing oxygen in the RA joints for the downregulation of the expression of HIF-1α, thereby reducing the amounts of M1 macrophages and inducing the polarization of M2 macrophages for chemically sensitized RA treatment. The forthputting of temperature-sensitive hydrogel guaranteed the safety of cyanobacteria micro-nanodevice in vivo. Furthermore, the oxygen produced by cyanobacteria micro-nanodevice in a sustained manner enhanced the therapeutic effect of the antirheumatic drug methotrexate (MTX) and discouraged inflammation and bone erosion at RA. This study provided a new approach for the RA treatment of spatiotemporal-controlled release of oxygen in vitro.
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