首页|期刊导航|陆军军医大学学报|糖皮质激素通过诱导血管内皮细胞旁分泌促纤维化因子加速激素性股骨头坏死纤维化

糖皮质激素通过诱导血管内皮细胞旁分泌促纤维化因子加速激素性股骨头坏死纤维化OA

Glucocorticoids accelerate fibrosis in steroid-induced osteonecrosis of the femoral head by inducing paracrine pro-fibrotic factors from vascular endothelial cells

中文摘要英文摘要

目的 探究激素性股骨头坏死(glucocorticoid-induced osteonecrosis of the femoral head,GONFH)模型中,损伤的血管内皮细胞对股骨头坏死区域纤维化进程的调控作用,并深入解析其潜在分子机制,为GONFH的纤维化干预及临床治疗提供理论依据.方法 ①临床样本组织学检测:随机选取2023年12月至2025年12月期间大坪医院骨科收治的5例确诊为GONFH患者的股骨头样本作为试验组,同时选取5例因股骨颈骨折(femoral neck fracture,FNF)行手术治疗患者的股骨头样本作为正常对照组.对坏死反应带进行石蜡切片,HE染色、天狼星红染色、α-SMA/FN的Western blotting及CD31免疫荧光染色,评估组织形态、胶原沉积、纤维化相关蛋白表达及血管内皮细胞分布.②体外细胞实验:明确地塞米松(dexamethasone,DEX)处理后人脐静脉血管内皮细胞(human umbilical vein endothelial cell,HUVEC)分泌的因子对肌成纤维细胞活化的影响.应用转化生长因子-β(transforming growth factor-beta,TGF-β)诱导人骨髓间充质干细胞(human bone marrow mesenchymal stem cells,hBMSC)分化为肌成纤维细胞,成功后将HUVEC分为DEX处理组(作用48 h)和PBS对照组,收集2组细胞的条件培养基(conditioned medium,CM),将CM-DEX组和CM-PBS组分别与肌成纤维细胞共孵育48 h,Western blot检测肌成纤维细胞中α-SMA、Ⅰ型胶原蛋白(collagen type,Col Ⅰ)及FN的蛋白表达水平.③分子机制探究:提取CM-DEX组与CM-PBS组HUVEC总RNA,RNA转录组测序(RNA-seq),筛选两组间差异表达基因(DEGs),行GO功能富集和KEGG通路富集分析.收集2组HUVEC分泌蛋白行蛋白组学测序,筛选差异分泌蛋白,结合生物信息学分析其通路及与肌成纤维细胞活化的关联.结果 ①临床样本检测结果:与FNF对照组相比,GONFH组股骨头反应带区域:HE染色示组织排列紊乱、纤维组织增生;天狼星红染色示胶原沉积显著增加(P<0.000 1);α-SMA(P<0.01)及FN(P<0.000 1)蛋白表达升高.CD31⁺血管内皮细胞数量增多(P<0.000 1)且形成管状结构;α-SMA肌成纤维细胞数量增加(P<0.000 1),且与CD31细胞空间分布邻近.②体外细胞实验结果:与CM-PBS组比较,CM-DEX组肌成纤维细胞中α-SMA(P<0.01)及FN(P<0.01)蛋白表达升高,ColⅠ表达无显著差异(P=0.131 0).③分子测序:RNA-seq显示,CM-DEX组HUVEC上调620个基因,筛选出30个促纤维化/炎症相关基因,前5位为PTPRN2、TSC22D3、FKBP5、MAFB、SYP.GO富集于蛋白结合、转录调控、蛋白转运等;KEGG富集于TGF-β、JAK-STAT、MAPK、SNARE囊泡运输及外泌体通路.蛋白组学显示,CM-DEX组HUVEC分泌20个促纤维化相关蛋白(如TGFBR1、SMAD2、RAB11B、DCN等).GO富集于细胞外基质、胶原相关功能;KEGG富集于补体与凝血级联、细胞外基质(extracellular matrix,ECM)-受体互作、黏着斑等通路.结论 糖皮质激素可诱导血管内皮细胞异常活化,通过 TGF-β、PI3K-Akt及囊泡运输/外泌体等通路,促进 DCN、RAB11B、TGFBR1等促纤维化因子高表达;这些因子旁分泌作用于成纤维细胞,促使其活化并过度合成ECM(Col Ⅰ、FN).GONFH患者股骨头反应带中血管内皮细胞增多且与肌成纤维细胞空间邻近,进一步加剧纤维化进程.

Objective To investigate the regulatory role of injured vascular endothelial cells in the fibrosis progression in the necrotic region of the femoral head in a glucocorticoid-induced osteonecrosis of the femoral head(GONFH),and further elucidate the underlying molecular mechanisms,so as to provide a theoretical basis for anti-fibrotic intervention and clinical treatment of GONFH.Methods ① Clinical sample histological examination:Femoral head samples were collected from 5 patients diagnosed with GONFH admitted to Department of Orthopedics of Daping Hospital between December 2023 and December 2025 and assigned to the experimental group.Meanwhile,femoral head specimens from 5 patients undergoing surgical treatment for femoral neck fracture(FNF)were selected as the normal control group.Paraffin sections from the reactive zone of necrotic tissues were prepared.HE staining,Sirius red staining,Western blotting for α-smooth muscle actin(α-SMA)and fibronectin(FN),and CD31 immunofluorescence staining were performed to evaluate tissue morphology,collagen deposition,expression of fibrosis-related proteins and distribution of vascular endothelial cells.② In vitro experiments:The effect of factors secreted by dexamethasone(DEX)-treated human umbilical vein endothelial cells(HUVEC)on myofibroblast activation was determined.Human bone marrow mesenchymal stem cell(hBMSC)was induced to differentiate into myofibroblasts using transforming growth factor-β(TGF-β).HUVEC were then divided into a DEX treatment group(48 h)and a PBS control group,and conditioned medium(CM)was collected from both groups.CM-DEX and CM-PBS were co-incubated with myofibroblasts for 48 h,and Western blotting was applied to detect the protein expression levels of α-SMA,collagen type Ⅰ(Col Ⅰ),and FN in myofibroblasts.③ Exploration of molecular mechanisms:Total RNA was extracted from DEX-treated and control HUVEC for RNA sequencing(RNA-seq)to screen differentially expressed genes(DEGs)between the 2 groups.Gene Ontology(GO)functional enrichment and Kyoto Encyclopedia of Genes and Genomes(KEGG)pathway enrichment analyses were conducted.Secreted proteins from both groups of HUVEC were collected for proteomic sequencing,and differentially secreted proteins were screened.Bioinformatics analysis was used to analyze their pathways and association with myofibroblast activation.Results ① Clinical sample findings:Compared with the FNF control group,the reactive zone of the femoral head in the GONFH group showed:disorganized tissue arrangement and fibrous hyperplasia by HE staining;markedly increased collagen deposition by Sirius red staining(P<0.000 1);and elevated protein expression of α-SMA(P<0.01)and FN(P<0.000 1).The number of CD31 vascular endothelial cells was increased(P<0.000 1)with evident formation of tubular structures,and the count of α-SMA myofibroblasts was also elevated(P<0.000 1).In addition,α-SMA myofibroblasts were spatially adjacent to CD31+endothelial cells.② In vitro experiment results:Compared with the CM-PBS group,the expression levels of α-SMA and FN were significantly increased in myofibroblasts of the CM-DEX group(both P<0.01),while no significant difference was observed in Col Ⅰexpression(P=0.131 0).③ Molecular sequencing:RNA-seq results revealed that 620 genes were upregulated in DEX-treated HUVECs,and 30 of them were identified as pro-fibrotic/inflammation-related.The top 5 genes were PTPRN2,TSC22D3,FKBP5,MAFB and SYP.GO enrichment analysis indicated that these genes were mainly involved in protein binding,transcriptional regulation and protein transport.KEGG enrichment analysis revealed enrichment in TGF-β,JAK-STAT,MAPK,SNARE vesicular transport and exosome pathways.Proteomic analysis identified 20 pro-fibrotic proteins secreted by DEX-treated HUVEC,including TGFBR1,SMAD2,RAB11B and DCN.GO terms were predominantly enriched in extracellular matrix(ECM)and collagen-related functions.KEGG pathways were mainly enriched in the complement and coagulation cascades,ECM-receptor interaction and focal adhesion pathways.Conclusion Glucocorticoids induce abnormal activation of vascular endothelial cells,which promotes high expression of pro-fibrotic factors such as DCN,RAB11B,and TGFBR1 through the TGF-β,PI3K-Akt,and vesicle transport/exosome pathways.These factors act on fibroblasts in a paracrine fashion,promote fibroblast activation and excessive synthesis of ECM components including Col Ⅰ and FN.In the reactive zone of the femoral head in GONFH patients,the increased number of vascular endothelial cells and their spatial proximity to myofibroblasts further exacerbate the fibrosis process.

靳润泽;陈立峰;张伟;柏传青;倪振洪;周兰;熊雁;朱卫文;李冰飞;路星辰;柳溪;龚志伟;张晓琦;张钊源;刘克思

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)大坪医院康复医学科,重庆陆军军医大学(第三军医大学)大坪医院康复医学科,重庆陆军军医大学(第三军医大学)大坪医院康复医学科,重庆陆军军医大学(第三军医大学)大坪医院康复医学科,重庆重庆医药高等专科学校附属第一医院急危重症医学部,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)大坪医院骨科,重庆陆军军医大学(第三军医大学)大坪医院康复医学科,重庆陆军军医大学(第三军医大学)大坪医院骨科,重庆联勤保障部队第九八八医院耳鼻喉科与颌面外科,河南郑州陆军军医大学(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)大坪医院康复医学科,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)大坪医院骨科,重庆

医药卫生

股骨头坏死糖皮质激素血管内皮细胞肌成纤维细胞纤维化

osteonecrosis of the femoral headglucocorticoidsvascular endothelial cellsmyofibroblastsfibrosis

《陆军军医大学学报》 2026 (12)

1667-1678,12

重庆市杰出青年科学基金(CSTB2024NSCQ-JQX0019)陆军军医大学科技创新能力提升专项(2023XQN44)陆军军医大学科技创新能力提升专项(2023XJS38) Supported by the Science Fund for Distinguished Young Scholars of Chongqing(CSTB2024NSCQ-JQX0019),and the Special Project of Science and Technology Innovation Capacity Promotion of Army Medical University(2023XQN44,2023XJS38).

10.16016/j.2097-0927.202602073

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