骨关节炎
先天免疫系统
线粒体
线粒体DNA
细胞生物学
软骨细胞
发病机制
滑液
细胞外基质
免疫系统
滑膜炎
软骨
微泡
化学
生物
炎症
阿格里坎
趋化因子
小泡
脂多糖
间充质干细胞
小RNA
细胞外
胞外囊泡
医学
细胞外小泡
病理
滑膜关节
微阵列分析技术
免疫学
免疫组织化学
信号转导
转录组
通路分析
作者
Shiyu Li,Zi Yan,Xinwang Zhi,Weihan Zheng,Ziqi Zhang,Zhenning Dai,Wanying Chen,Hui Lü,Ziyi Feng,Ting Cheng,Wenhui Liu,Baoyu Sun,Yuhai Ma,Bing Zhang,Jian‐Yuan Zhao,Han Liu,Jiacan Su
标识
DOI:10.1016/j.bioactmat.2025.11.046
摘要
EV's within the total synovial fluid EV's from OA patients than from trauma patients as well as increased mtDNA content. This implicates the mitochondria derived EV sub-group - mitochondria derived vesicles (MDVs) as a potential driver in OA. We found with the single-cell data that MDVs may be secreted from IPFP-MSCs with VPS35. Furthermore, these cells were harvested from the body of the OA patient. IPFP-MSC derived MDVs can deliver exogenous mtDNA to chondrocytes by fusing directly, thus inhibiting chondrocyte matrix synthesis, inducing mitochondrial dysfunction, and activating pro-inflammatory signaling cascades in chondrocytes. Protein microarrays showed that MDVs delivered exogenous mtDNA to chondrocytes, which then activated the cGAS-STING pathway and downstream inflammatory mediators (TBK1, NF-κB, TNF-α). Intra-articular MDV injection worsened cartilage degradation and synovitis in OA rats but STING inhibition alleviated them. This study showed that IPFP-MSC-derived MDVs are essential for OA pathogenesis via mtDNA transfer and cGAS-STING pathway activation. These results show how the mitochondria and immune system talk to each other in the joints causing pain and destroying the cartilage, MDVs are new things that can tell us if someone has this disease and help doctors fix it. Pharmacological blockade of the cGAS-STING axis has shown therapeutic potential, providing a dual approach to mitigate mitochondrial stress and innate immune hyperactivation in OA.
科研通智能强力驱动
Strongly Powered by AbleSci AI