首页|期刊导航|陆军军医大学学报|成纤维细胞生长因子7通过激活FGFR1通路促进骨关节炎滑膜纤维化

成纤维细胞生长因子7通过激活FGFR1通路促进骨关节炎滑膜纤维化OA

Fibroblast growth factor 7 promotes synovial fibrosis in osteoarthritis by activating the FGFR1 signaling pathway

中文摘要英文摘要

目的 滑膜纤维化是骨关节炎(osteoarthritis,OA)的重要病理改变,并与疾病进展密切相关.在OA滑膜纤维化进程中,成纤维细胞向肌成纤维细胞分化,引起细胞外基质(extracellular matrix,ECM)异常沉积,导致关节疼痛、活动受限等临床症状.本研究拟探索成纤维细胞生长因子7(fibroblast growth factor 7,FGF7)-成纤维细胞生长因子受体1(fibroblast growth factor receptor 1,FGFR1)信号轴在OA滑膜纤维化中的作用及细胞分子机制.方法 ①通过挖掘滑膜单细胞测序公共数据,结合差异分析、富集分析、纤维化评分、相关性分析及虚拟敲除技术,探讨FGF7/FGFR1与OA滑膜纤维化的关系;②通过内侧半月板失稳术(destabilization of the medial meniscus,DMM)建立OA小鼠模型,假手术组作为对照组,术后关节腔注射FGF7重组蛋白(2 μg/10 μL)或PBS,每周1次,持续4周.分别于DMM术后4周(n=6/组)和8周(n=5/组)通过行为学检测进行功能评估,包括步态分析、双足平衡试验及膝关节活动度测试;通过组织病理学分析评估滑膜纤维化与炎症改变,包括HE染色、Masson染色、天狼星红染色及I型胶原蛋白α1链(collagen type Ⅰ alpha 1 chain,COL1A1)、平滑肌肌动蛋白(alpha-smooth muscle actin,α-SMA)免疫染色;③通过EdU、CCK-8、划痕实验、qPCR、Western blotting等,探讨FGF7在成纤维细胞向肌成纤维细胞分化中的作用机制.结果 ①FGF7表达与滑膜纤维化评分正相关;②外源性FGF7显著加重DMM小鼠的关节功能障碍.DMM术后4周,与PBS组相比,FGF7组小鼠右后肢着地时间占比(P<0.01)、右后肢负重能力(P<0.01)及膝关节活动度(P<0.001)均降低,DMM术后8周呈现同样趋势;③FGF7促进小鼠滑膜ECM沉积与纤维化标志物表达.组织学分析显示,与PBS组相比,FGF7处理显著加重了DMM小鼠的滑膜炎症(4周:P<0.000 1;8周:P<0.01)并促进ECM沉积.COL1A1免疫组化提示,FGF7组在术后4周(P<0.05)和8周(P<0.0001)的Ⅰ型胶原沉积均增多;α-SMA免疫荧光同样显示,FGF7组在术后4周(P<0.001)和8周(P<0.01)的表达显著上调;④EdU(P<0.05)和CCK-8(P<0.05)实验提示FGF7促进成纤维细胞增殖;划痕实验提示FGF7促进成纤维细胞迁移(P<0.01);FGF7上调成纤维细胞α-SMA(P<0.001)、COL1A1(P<0.001)的表达;⑤FGF7通过FGFR1通路发挥促纤维化作用.FGF7可激活成纤维细胞p-FGFR1(P<0.05)和p-ERK(P<0.01)的表达;BGJ398可抑制FGF7对成纤维细胞上调p-FGFR1(P<0.05)、p-ERK(P<0.05)、COL1A1(P<0.05)和α-SMA(P<0.01)的作用.结论 外源性FGF7加剧OA小鼠滑膜纤维化,并揭示FGF7通过激活FGFR1通路促进成纤维细胞增殖、迁移以及向肌成纤维细胞分化的分子机制,为OA滑膜纤维化治疗提供了潜在新靶点.

Objective Synovial fibrosis is an important pathological change in osteoarthritis(OA)and is closely associated with disease progression.During the progression of synovial fibrosis in OA,fibroblasts differentiate into myofibroblasts,leading to abnormal deposition of extracellular matrix(ECM)and resulting in clinical symptoms such as joint pain and limited mobility.This study aims to investigate the role and cellular and molecular mechanisms of the fibroblast growth factor 7(FGF7)-fibroblast growth factor receptor 1(FGFR1)signaling axis in OA synovial fibrosis.Methods ① By mining publicly available synovial single-cell sequencing data,combined with differential analysis,enrichment analysis,fibrosis scoring,correlation analysis,and virtual knockout techniques,the relationship between FGF7/FGFR1 and OA synovial fibrosis was explored.② An OA mouse model was established via destabilization of the medial meniscus(DMM),and the mice receiving sham surgery served as the control group.Recombinant FGF7 protein(2 μg/10 μL)or PBS was injected into the joint cavity once weekly for 4 weeks.Functional assessments were performed at 4(n=6)and 8 weeks(n=5)after modeling via behavioral testing,including gait analysis,hindlimb balance test,and knee joint range-of-motion evaluation.Histopathological analyses,including HE,Masson's trichrome,and Sirius Red staining,as well as immunostaining for collagen type Ⅰ alpha 1 chain(COL1A1)and alpha-smooth muscle actin(α-SMA),were conducted to evaluate synovial fibrosis and inflammatory changes.③ EdU,CCK-8 assay,wound-healing assay,qPCR,and Western blotting were applied to investigate the role of FGF7 in fibroblast-to-myofibroblast differentiation.Results ① FGF7 expression was positively correlated with synovial fibrosis scores.② Exogenous FGF7 markedly aggravated OA-related joint dysfunction in DMM mice.At 4 weeks post-DMM,compared with the PBS group,the FGF7 group showed decreased distribution of right hindlimb ground contact time(P<0.01),right hindlimb weight-bearing(P<0.01),and knee joint range-of-motion(P<0.001),with a similar trend observed at 8 weeks post-DMM.③ FGF7 promoted ECM deposition and upregulated fibrosis markers in the synovial tissues.Histological analysis revealed that FGF7 treatment significantly aggravated synovial inflammation at 4 weeks(P<0.000 1)and 8 weeks(P<0.01),and promoted ECM deposition compared with the PBS group.COL1A1 immunohistochemical staining indicated increased type Ⅰ collagen deposition in the FGF7 group at 4(P<0.05)and 8 weeks(P<0.000 1),and immunofluorescence assay showed increased α-SMA expression in the FGF7 group at 4(P<0.001)and 8 weeks(P<0.01).④ In in vitro study,EdU and CCK-8 assays indicated that FGF7 promoted fibroblast proliferation(P<0.05);the scratch assay showed that FGF7 enhanced fibroblast migration(P<0.01);FGF7 upregulated α-SMA(P<0.001)and COL1A1(P<0.001)expression in fibroblasts.⑤Mechanistically,FGF7 exerted pro-fibrotic effects through the FGFR1 pathway.FGF7 activated p-FGFR1(P<0.05)and p-ERK(P<0.01)expression in fibroblasts;BGJ398 inhibited the FGF7-induced upregulation of p-FGFR1(P<0.05),p-ERK(P<0.05),COL1A1(P<0.05),and α-SMA(P<0.01)in fibroblasts.Conclusion Exogenous FGF7 exacerbates synovial fibrosis in OA mice.Our findings revealed that FGF7 promotes fibroblast proliferation,migration,and differentiation into myofibroblasts via activation of the FGFR1 pathway,thereby providing a potential novel target for the treatment of OA synovial fibrosis.

刘人豪;陈亮;旷梁;陈林;杨俊;李孝红;韩佳洺;彭秀琴;王海霖;雷庆强;毛雪芹;田雨

陆军军医大学(第三军医大学)大坪医院野战外科研究部战伤组织修复与康复医学研究室,重庆陆军军医大学(第三军医大学)大坪医院骨科,重庆陆军军医大学(第三军医大学)大坪医院野战外科研究部战伤组织修复与康复医学研究室,重庆陆军军医大学(第三军医大学)大坪医院野战外科研究部战伤组织修复与康复医学研究室,重庆陆军军医大学(第三军医大学)大坪医院野战外科研究部战伤组织修复与康复医学研究室,重庆陆军军医大学(第三军医大学)大坪医院野战外科研究部战伤组织修复与康复医学研究室,重庆陆军军医大学(第三军医大学)大坪医院野战外科研究部战伤组织修复与康复医学研究室,重庆陆军军医大学(第三军医大学)大坪医院野战外科研究部战伤组织修复与康复医学研究室,重庆陆军军医大学(第三军医大学)大坪医院野战外科研究部战伤组织修复与康复医学研究室,重庆陆军军医大学(第三军医大学)大坪医院野战外科研究部战伤组织修复与康复医学研究室,重庆陆军军医大学(第三军医大学)大坪医院野战外科研究部战伤组织修复与康复医学研究室,重庆陆军军医大学(第三军医大学)大坪医院野战外科研究部战伤组织修复与康复医学研究室,重庆

医药卫生

FGF7FGFR1骨关节炎滑膜纤维化

FGF7FGFR1osteoarthritissynovial fibrosis

《陆军军医大学学报》 2026 (12)

1648-1666,19

科技部重点研发计划子课题(2022YFA1103202)国家自然科学基金重大项目(82394444)国家自然科学基金面上项目(82272559)重庆市自然科学基金重点项目(CSTB2024NSCQ-LZX0104)重庆市科卫联合医学科研项目(2024DBXM008). Supported by the Sub-Project of National Key Research and Development Program of China(2022YFA1103202),the Major Project of National Natural Science Foundation of China(82394444),the General Project of National Natural Science Foundation of China(82272559),the Key Project of Natural Science Foundation of Chongqing(CSTB2024NSCQ-LZX0104),and the Joint Medical Research Project of Chongqing Science and Technology Commission and Chongqing Health Commission(2024DBXM008).

10.16016/j.2097-0927.202603027

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