炎症
滑液
类风湿性关节炎
关节炎
医学
软骨
发病机制
癌症研究
微泡
体内分布
滑膜炎
病理
化学
骨关节炎
免疫学
小RNA
体外
替代医学
解剖
基因
生物化学
作者
Huiyi Liang,Bo Peng,Cong Dong,Lixin Liu,Jiaji Mao,Wei Song,Xinlu Wang,Hanshi Xu,Jun Shen,Hai‐Quan Mao,Xiaohu Gao,Kam W. Leong,Yongming Chen
标识
DOI:10.1038/s41467-018-06603-5
摘要
Abstract Cell-free DNA (cfDNA) released from damaged or dead cells can activate DNA sensors that exacerbate the pathogenesis of rheumatoid arthritis (RA). Here we show that ~40 nm cationic nanoparticles (cNP) can scavenge cfDNA derived from RA patients and inhibit the activation of primary synovial fluid monocytes and fibroblast-like synoviocytes. Using clinical scoring, micro-CT images, MRI, and histology, we show that intravenous injection of cNP into a CpG-induced mouse model or collagen-induced arthritis rat model can relieve RA symptoms including ankle and tissue swelling, and bone and cartilage damage. This culminates in the manifestation of partial mobility recovery of the treated rats in a rotational cage test. Mechanistic studies on intracellular trafficking and biodistribution of cNP, as well as measurement of cytokine expression in the joints and cfDNA levels in systemic circulation and inflamed joints also correlate with therapeutic outcomes. This work suggests a new direction of nanomedicine in treating inflammatory diseases.
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