基于网络药理学及实验验证探讨膝痹宁Ⅱ通过PI3K/Akt/NF-κB信号通路改善KOA软骨细胞损伤的机制研究

Mechanistic Study on the Protective Effects of Xibining Ⅱ on Chondrocyte Injury in Knee Osteoarthritis via the PI3K/Akt/NF-κB Signaling Pathway Based on Network Pharmacology and Experimental Validation

  • 摘要:
    目的 探讨膝痹宁Ⅱ通过PI3K/Akt/NF-κB缓解膝骨关节炎(Knee osteoarthritis,KOA)软骨损伤的作用机制。
    方法 采用网络药理学方法筛选膝痹宁Ⅱ活性成分及OA相关靶点,构建蛋白互作网络并进行GO、KEGG富集分析,结合分子对接预测关键活性成分与核心靶点蛋白的结合能力。采用IL-1β诱导小鼠原代软骨细胞建立炎症损伤模型。根据CCK-8结果,选取5%和10%膝痹宁Ⅱ含药血清作为低、高浓度组进行后续实验,并设置PI3K激动剂740Y-P进行通路回复验证。ELISA检测IL-6、TNF-α及IL-4水平,TUNEL检测细胞凋亡,Western blot及免疫荧光检测软骨基质代谢相关蛋白及PI3K/Akt/NF-κB信号通路相关蛋白表达。
    结果 网络药理学共筛得膝痹宁Ⅱ与OA交集靶点135个,其中核心靶点包括AKT1、TNF、IL-6、IL-1β、NF-κB1等,富集分析提示PI3K-Akt signaling pathway、Apoptosis及MAPK signaling pathway等通路可能为膝痹宁Ⅱ的主要作用途径。分子对接结果显示,代表性关键活性成分与AKT1、NF-κB1、TNF、IL-6、IL-1β、CASPASE3等核心靶点蛋白具有较好结合活性。CCK-8结果显示,不同浓度空白血清及膝痹宁Ⅱ含药血清对原代软骨细胞均无明显细胞毒性,综合细胞活力变化趋势,选取5%和10%含药血清作为后续干预浓度。体外实验表明,与模型组相比,膝痹宁Ⅱ含药血清可降低IL-6、TNF-α水平并升高IL-4水平,降低核内TUNEL荧光强度,上调COL2A1、ACAN、SOX9表达并下调MMP13表达,同时下调p-PI3K/PI3K、p-Akt/Akt及p-NF-κB/NF-κB比值,且高浓度组效果更好(P<0.05)。在高浓度组加入PI3K激动剂740Y-P后,上述保护作用均被部分逆转(P<0.01)。
    结论 膝痹宁Ⅱ可能通过抑制PI3K/Akt/NF-κB信号通路异常激活,减轻炎症反应与细胞凋亡,改善软骨基质代谢失衡,从而发挥对KOA软骨细胞的保护作用。

     

    Abstract:
    OBJECTIVE To investigate the mechanism by which Xibining Ⅱ alleviates chondrocyte injury in knee osteoarthritis (KOA) through the PI3K/Akt/NF-κB signaling pathway.
    METHODS Network pharmacology was used to screen the active components of Xibining Ⅱ and KOA-related targets, followed by construction of a protein-protein interaction network, GO and KEGG enrichment analyses, and molecular docking to predict the binding ability of representative key active components to core target proteins. An inflammatory injury model was established in primary mouse chondrocytes induced by IL-1β. According to the CCK-8 results, 5% and 10% Xibining Ⅱ medicated serum was selected as low- and high-concentration groups for subsequent experiments, and the PI3K agonist 740Y-P was used for rescue verification. ELISA was used to detect the levels of IL-6, TNF-α, and IL-4. TUNEL staining was used to assess apoptosis. Western blot and immunofluorescence were performed to detect the expression of cartilage matrix metabolism-related proteins and PI3K/Akt/NF-κB pathway-related proteins.
    RESULTS A total of 135 overlapping targets between Xibining Ⅱ and KOA were identified by network pharmacology. The core targets included AKT1, TNF-α, IL-6, IL-1β, and NF-κB1. Enrichment analysis indicated that the PI3K-Akt signaling pathway, apoptosis, and the MAPK signaling pathway might be major pathways involved in the effects of Xibining Ⅱ. Molecular docking showed that representative key active components had good binding activities with core target proteins such as AKT1, NFKB1, TNF, IL-6, IL-1β, and CASPASE3. CCK-8 results showed that different concentrations of blank serum and Xibining Ⅱ medicated serum had no significant cytotoxicity on primary chondrocytes. Based on the overall trend of cell viability changes, 5% and 10% medicated serum were selected as the subsequent intervention concentrations. In vitro experiments showed that, compared with the model group, Xibining Ⅱ medicated serum reduced the levels of IL-6 and TNF-α, increased the level of IL-4, decreased nuclear TUNEL fluorescence intensity, upregulated the expression of COL2A1, ACAN, and SOX9, downregulated the expression of MMP13, and decreased the ratios of p-PI3K/PI3K, p-Akt/Akt, and p-NF-κB/NF-κB, with better effects in the high-concentration group(P<0.05). After addition of the PI3K agonist 740Y-P to the high-concentration group, the above protective effects were partially reversed(P<0.05).
    CONCLUSION Xibining Ⅱ may exert protective effects on KOA chondrocytes by inhibiting abnormal activation of the PI3K/Akt/NF-κB signaling pathway, thereby reducing inflammation and apoptosis and improving cartilage matrix metabolic imbalance.

     

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