雌激素通过PI3K-Akt通路在肩周炎中抗纤维化作用的机制研究

IF 3.1 2区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Steroid Biochemistry and Molecular Biology Pub Date : 2025-05-01 Epub Date: 2025-02-11 DOI:10.1016/j.jsbmb.2025.106701
Zhuo Wang , Xinhao Li , Xiaoshan Liu , Yitao Yang , Yan Yan , Dedong Cui , Chenyang Meng , Maslah Idiris Ali , Jinming Zhang , Zeyu Yao , Yi Long , Rui Yang
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引用次数: 0

摘要

冻肩(FS)的发展主要以病理性纤维化为特征,但临床治疗选择仍然有限。最近的研究已经确定围绝经期雌激素耗竭是FS和纤维化发病的重要因素。本研究探讨了雌二醇(E2)和雌激素相关受体(GPER)在FS相关纤维化过程中的作用,以阐明其潜在机制。通过大鼠固定模型和FS患者的滑膜衍生成纤维细胞(SFs),研究E2、GPER和FS进展之间的功能关系。E2对GPER表达、成纤维细胞活化和组织纤维化的影响通过Western blotting、免疫荧光染色、胶原收缩试验、伤口愈合试验和组织学染色来评估。RNA测序确定了E2治疗相关的信号通路和关键调控因子。E2和GPER激活剂G1均表现出抗纤维化作用,改善肩关节活动度,减少关节周囊内细胞外基质(ECM)沉积,降低纤维连接蛋白、α-SMA和COL3等纤维化相关基因的表达。相比之下,GPER抑制剂G15逆转了这些作用,表明E2通过GPER激活介导其抗纤维化作用。机制上,KEGG通路分析显示E2通过抑制PI3K和AKT磷酸化抑制PI3K/AKT信号通路,从而阻止成纤维细胞活化并逆转fs相关纤维化。这些发现为以前未被认识到的GPER在FS进展中的作用提供了机制见解,并可能为优化未来临床治疗的研究开辟新的途径。
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Mechanistic insights into the anti-fibrotic effects of estrogen via the PI3K-Akt pathway in frozen shoulder
The development of frozen shoulder (FS) is primarily characterized by pathological fibrosis, yet clinical treatment options remain limited. Recent studies have identified estrogen depletion during perimenopause as a significant contributor to the onset of FS and fibrosis. This study investigates the role of estradiol (E2) and the estrogen-related receptor (GPER) in fibrotic processes associated with FS to elucidate the underlying mechanisms. The functional relationship between E2, GPER, and FS progression was examined using a rat immobilization model and synovial-derived fibroblasts (SFs) from FS patients. E2’s effects on GPER expression, fibroblast activation, and tissue fibrosis were evaluated through Western blotting, immunofluorescence staining, collagen contraction assays, wound healing assays, and histological staining. RNA sequencing identified signaling pathways and key regulators involved in E2 treatment. Both E2 and the GPER activator G1 exhibited antifibrotic effects, improving shoulder mobility, reducing extracellular matrix (ECM) deposition in the periarticular capsule, and decreasing the expression of fibrosis-related genes, including fibronectin, α-SMA, and COL3. In contrast, the GPER inhibitor G15 reversed these effects, suggesting that E2 mediates its antifibrotic action through GPER activation. Mechanistically, KEGG pathway analysis revealed that E2 suppresses the PI3K/AKT signaling pathway by inhibiting PI3K and AKT phosphorylation, thereby preventing fibroblast activation and reversing FS-associated fibrosis. These findings provide mechanistic insights into the previously unrecognized role of GPER in FS progression and may open new avenues for research to optimize future clinical therapies.
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来源期刊
CiteScore
8.60
自引率
2.40%
发文量
113
审稿时长
46 days
期刊介绍: The Journal of Steroid Biochemistry and Molecular Biology is devoted to new experimental and theoretical developments in areas related to steroids including vitamin D, lipids and their metabolomics. The Journal publishes a variety of contributions, including original articles, general and focused reviews, and rapid communications (brief articles of particular interest and clear novelty). Selected cutting-edge topics will be addressed in Special Issues managed by Guest Editors. Special Issues will contain both commissioned reviews and original research papers to provide comprehensive coverage of specific topics, and all submissions will undergo rigorous peer-review prior to publication.
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