南方医科大学学报 ›› 2025, Vol. 45 ›› Issue (1): 35-42.doi: 10.12122/j.issn.1673-4254.2025.01.05

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缺氧微环境下补阳还五汤通过抑制BNIP3-PI3K/Akt通路抑制类风湿关节炎滑膜成纤维细胞的线粒体自噬

展俊平1, 黄硕2, 孟庆良1, 范围1, 谷慧敏1, 崔家康1, 王慧莲1   

  1. 1.河南省中医院//河南中医药大学第二附属医院风湿科,河南 郑州 450002
    2.河南中医药大学骨伤学院,河南 郑州 450008
  • 收稿日期:2024-07-26 出版日期:2025-01-20 发布日期:2025-01-20
  • 通讯作者: 王慧莲
  • 作者简介:展俊平,博士,硕士生导师,副主任医师,E-mail: zjp123sun @126.com
  • 基金资助:
    河南省高等学校重点科研项目计划(22B360006);河南省中医药科学研究专项课题(2019ZY2060);河南省卫生健康委员会中医药拔尖人才培养项目资助(豫卫中医函[2021]15号)

Buyang Huanwu Decoction reduces mitochondrial autophagy in rheumatoid arthritis synovial fibroblasts in hypoxic culture by inhibiting the BNIP3-PI3K/Akt pathway

Junping ZHAN1, Shuo HUANG2, Qingliang MENG1, Wei FAN1, Huimin GU1, Jiakang CUI1, Huilian WANG1   

  1. 1.Department of Rheumatology, Henan Provincial Hospital of Traditional Chinese Medicine// Second Affiliated Hospital of Henan University of Traditional Chinese Medicine, Zhengzhou 450002, China
    2.College of Orthopedics and Traumatology, Henan University of Traditional Chinese Medicine, Zhengzhou 450008, China
  • Received:2024-07-26 Online:2025-01-20 Published:2025-01-20
  • Contact: Huilian WANG

摘要:

目的 在低氧微环境下,以BNIP3-PI3K/Akt信号通路为核心,研究补阳还五汤参与FLS-RA线粒体自噬的调控机制。 方法 将成纤维样滑膜细胞(FLS)体外培养,分为正常对照组(FLS-RA正常培养)、模型对照组(IL-1β诱导)、补阳还五汤含药血清低、中、高干预组(IL-1β诱导+浓度分别为5%、10%、20%含药血清),除正常对照组外,其余组细胞按照10% O2浓度低氧处理。AnnexinV-APC/7-AAD双染测定细胞凋亡和T-AOC试剂盒检测细胞总抗氧化能力。探针分子测定细胞ROS,ATP试剂盒测定细胞ATP水平、线粒体膜电位(Δψm)、细胞Ca2+平衡稳态的变化。Western blotting法检测BNIP3、PI3K、AKT蛋白表达水平,RT-q PCR法检测BNIP3、PI3K、AKT及自噬相关因子LC3、Beclin-1、P62 mRNA 的表达。 结果 补阳还五汤组能够降低细胞的凋亡百分比(P<0.05),且呈浓度依赖性。补阳还五汤组总抗氧化力降低,T-AOC浓度(U/mL)降低,ROS产生增加。观察到自噬小体的形成,ATP 酶水平释放量增加(P<0.05);线粒体膜电位、Ca2+水平均呈下降趋势。补阳还五汤组BNIP3蛋白表达升高,PI3K、AKT表达降低;与模型组相比,补阳还五汤组BNIP3、P62、mRNA表达升高(P<0.05);PI3K、AKT、LC3、Beclin-1、mRNA表达降低,Beclin-1的表达差异无统计学意义(P>0.05);LC3的表达仅在中药小剂量组差异无统计学意义(P>0.05)。 结论 在低氧环境下,补阳还五汤可能通过抑制BNIP3介导的PI3K/AKT通路,从而抑制了自噬因子的表达。

关键词: 低氧, 补阳还五汤, 类风湿关节炎, 滑膜成纤维细胞, BNIP3-PI3K/Akt, 线粒体自噬

Abstract:

Objective To investigate the role of the BNIP3-PI3K/Akt signaling pathway in mediating the inhibitory effect of Buyang Huanwu Decoction (BYHWT) on mitochondrial autophagy in human synovial fibroblasts from rheumatoid arthritis patients (FLS-RA) cultured under a hypoxic condition. Methods Forty normal Wistar rats were randomized into two groups (n=20) for daily gavage of BYHWT or distilled water for 7 days to prepare BYHWT-medicated or control sera. FLS-RA were cultured in routine condition or exposed to hypoxia (10% O2) for 24 h wigh subsequent treatment with IL-1β, followed by treatment with diluted BYHWT-medicated serum (5%, 10% and 20%) or control serum. AnnexinV-APC/7-AAD double staining and T-AOC kit were used for detecting apoptosis and total antioxidant capacity of the cells, and the changes in ROS, ATP level, mitochondrial membrane potential and Ca2+ homeostasis were analyzed. The changes in mRNA and protein expressions of BNIP3, PI3K and AKT and mRNA expressions of LC3, Beclin-1 and P62 were detected using RT-qPCR and Western blotting. Results Treatment with BYHWT-medicated serum dose-dependently lowered apoptosis rate of IL-1β-induced FLS-RA with hypoxic exposure. The treatment significantly decreased T-AOC concentration, increased ROS production, autophagosome formation and ATPase levels, and lowered mitochondrial membrane potential and Ca2+ level in the cells. In IL-1β-induced FLS-RA with hypoxic exposure, treatment with BYHWT-medicated serum significantly increased BNIP3 protein expression, decreased the protein expressions of PI3K and AKT, increased the mRNA expressions of BNIP3 and P62, and lowered the mRNA expressions of PI3K, AKT, LC3 and Beclin-1 without significantly affecting Beclin-1 protein expression. The cells treated with 5% and 10% BYHWT-medicated serum showed no significant changes in LC3 expression. Conclusion BYHWT inhibits mitochondrial autophagy in IL-1β-induced FLS-RA with hypoxic exposure possibly by inhibiting BNIP3-mediated PI3K/AKT signaling pathway.

Key words: hypoxia, Buyang Huanwu Decoction, rheumatoid arthritis, synovial fibroblast, BNIP3-PI3K/Akt, mitochondrial autophagy