Yan TingXin, Wang Peng, Cao Zhilin
Department of Joint Surgery, Yantaishan Hospital, Yantai, Shandong, China.
Ministry of Scientific and Technological Innovation, Yantai Hi-Tech Industrial Development Zone, Yantai, Shandong, China.
Biol Trace Elem Res. 2024 Nov 22. doi: 10.1007/s12011-024-04454-4.
The mechanism of CFB in treating knee osteoarthritis is not yet clear and deserves further discussion. The C28/I2 cell was stimulated by TNF-α and the MIA-induced OA rat model were constructed, and then treated with a certain concentration of CFB. The effects of CFB on chondrocyte apoptosis, inflammatory response, and collagen matrix degradation were assessed. Furthermore, we analyzed the regulation of CFB on the DDIT3 and Hedgehog pathways through western blot analysis. The smoothened agonist inhibitor SAG and DDIT3 overexpression lentivirus were applied to investigate how CFB regulates DDIT3 and Hedgehog pathway to protect against osteoarthritis. Our experimental results proved the protective of CFB against TNF-α stimulated C28/I2 cells. CFB treatment downregulated the DDIT3 protein and inactivated the HH pathway in TNF-α stimulated C28/I2 cells, and this effect may be related to the DDIT3 or HH pathway. Furthermore, the inhibitory effect of CFB on the HH pathway is related to DDIT3. In vivo animal assays showed that CFB can inhibit the degradation of cartilage collagen matrix, inhibit chondrocyte apoptosis, improve chondrocyte damage, and alleviate pain in arthritis rats, and the effect of CFB on OA rats is related to the HH pathway mediated by DDIT3. In summary, CFB has significant therapeutic effects on osteoarthritis, protecting cartilage degradation and damage, and inhibiting inflammatory responses. DDIT3 may participate as an intermediate molecule in the protective effect of the drug on OA. The SHH/GLi1 pathway is regulated by CFB through DDIT3.
CFB治疗膝骨关节炎的机制尚不清楚,值得进一步探讨。用TNF-α刺激C28/I2细胞,构建MIA诱导的骨关节炎大鼠模型,然后用一定浓度的CFB进行处理。评估CFB对软骨细胞凋亡、炎症反应和胶原基质降解的影响。此外,通过蛋白质免疫印迹分析,我们分析了CFB对DDIT3和Hedgehog信号通路的调控作用。应用 smoothened 激动剂抑制剂SAG和DDIT3过表达慢病毒,研究CFB如何调节DDIT3和Hedgehog信号通路以预防骨关节炎。我们的实验结果证明了CFB对TNF-α刺激的C28/I2细胞具有保护作用。CFB处理可下调TNF-α刺激的C28/I2细胞中DDIT3蛋白表达并使HH信号通路失活,这种作用可能与DDIT3或HH信号通路有关。此外,CFB对HH信号通路的抑制作用与DDIT3有关。体内动物实验表明,CFB可抑制关节炎大鼠软骨胶原基质的降解,抑制软骨细胞凋亡,改善软骨细胞损伤并减轻疼痛,且CFB对骨关节炎大鼠的作用与DDIT3介导的HH信号通路有关。综上所述,CFB对骨关节炎具有显著的治疗作用,可保护软骨降解和损伤,并抑制炎症反应。DDIT3可能作为药物对骨关节炎保护作用的中间分子参与其中。CFB通过DDIT3调节SHH/GLi1信号通路。