骨关节炎
软骨
细胞外基质
基质金属蛋白酶
小干扰RNA
炎症
II型胶原
阿格里坎
医学
蛋白质水解
癌症研究
化学
细胞生物学
核糖核酸
药理学
免疫学
病理
内科学
解剖
生物
基因
关节软骨
生物化学
酶
替代医学
作者
Sean K. Bedingfield,Juan M. Colazo,Fang Yu,Danielle D. Liu,Meredith A. Jackson,Lauren E. Himmel,Hongsik Cho,Leslie J. Crofford,Karen A. Hasty,Craig L. Duvall
标识
DOI:10.1038/s41551-021-00780-3
摘要
The progression of osteoarthritis is associated with inflammation triggered by the enzymatic degradation of extracellular matrix in injured cartilage. Here we show that a locally injected depot of nanoparticles functionalized with an antibody targeting type II collagen and carrying small interfering RNA targeting the matrix metalloproteinase 13 gene (Mmp13), which breaks down type II collagen, substantially reduced the expression of MMP13 and protected cartilage integrity and overall joint structure in acute and severe mouse models of post-traumatic osteoarthritis. MMP13 inhibition suppressed clusters of genes associated with tissue restructuring, angiogenesis, innate immune responses and proteolysis. We also show that intra-articular injections of the nanoparticles led to greater reductions in disease progression than either a single injection or weekly injections of the steroid methylprednisolone. Sustained drug retention by targeting collagen in the damaged extracellular matrix of osteoarthritic cartilage may also be an effective strategy for the treatment of osteoarthritis with other disease-modifying drugs.
科研通智能强力驱动
Strongly Powered by AbleSci AI