肌腱病
粒体自噬
氧化应激
细胞生物学
干细胞
线粒体
医学
肌腱
机制(生物学)
自噬
生物
细胞凋亡
内科学
生物化学
病理
哲学
认识论
作者
Yuanyuan Gao,Wenshuang Sun,Junrui Wang,Danli Zhao,Haoyuan Tian,Yangling Qiu,Shufan Ji,Shuqi Wang,Qiuyu Fu,Feng Zhang,Zili Zhang,Feixia Wang,Jiangjuan Shao,Shizhong Zheng,Jia Meng
标识
DOI:10.1016/j.intimp.2024.112652
摘要
Tendinopathy is one of the most prevalent sports injury diseases in orthopedics. However, there is no effective treatment or medicine. Recently, the discovery of tendon stem cells (TSCs) provides a new perspective to find new therapeutic methods for Tendinopathy. Studies have shown that oxidative stress will inevitably cause TSCs injury during tendinopathy, but the mechanism has not been fully elucidated. Here, we report the oxidative damage of TSCs induced by H2O2 via ferroptosis, as well, treatment with H2O2 raised the proportion of mitochondria engulfed by autophagosomes in TSCs. The suppression of mitophagy by Mdivi-1 significantly attenuates the H2O2-induced ferroptosis in TSCs. Mechanically, H2O2 actives the cGAS-STING pathway, which can regulate the level of mitophagy. Interfering with cGAS could impair mitophagy and the classical ferroptotic events. In the rat model of tendinopathy, interference of cGAS could relieve tendon injury by inhibiting ferroptosis. Overall, these results provided novel implications to reveal the molecular mechanism of tendinopathy, by which pointed to cGAS as a potential therapeutic target for the treatment of tendinopathy.
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