Fibroblast growth factor 23 inhibition attenuates steroid-induced osteonecrosis of the femoral head through pyroptosis

被引:2
作者
Fang, Lun [1 ,5 ]
Zhang, Gang [2 ]
Wu, Yadi [1 ]
Li, Hao [3 ,4 ]
Li, Zhongzhe [1 ]
Yu, Beilei [1 ]
Wang, Bin [1 ]
Zhou, Lu [1 ]
机构
[1] Shandong First Med Univ & Shandong Acad Med Sci, Coll Sports Med & Rehabil, Inst Sports Med, 619 Changcheng Rd, Tai An 271016, Shandong, Peoples R China
[2] Shandong First Med Univ, Affiliated Hosp 2, Dept Orthoped, Tai An 271000, Shandong, Peoples R China
[3] Shandong First Med Univ & Shandong Acad Med Sci, Sch Lab Anim, Jinan 250000, Shandong, Peoples R China
[4] Shandong First Med Univ & Shandong Acad Med Sci, Shandong Lab Anim Ctr, Jinan, Shandong, Peoples R China
[5] Nanjing Univ, Med Sch, Nanjing 210093, Jiangsu, Peoples R China
关键词
Osteonecrosis of the femoral head; Steroid; FGF23; Pyroptosis; OSTEOBLAST DIFFERENTIATION; BONE; EXPRESSION; PATHOGENESIS; OSTEOCYTES;
D O I
10.1038/s41598-024-66799-z
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Steroid-induced osteonecrosis of the femoral head (SONFH) is the predominant cause of non-traumatic osteonecrosis of the femoral head (ONFH). Impaired blood supply and reduced osteogenic activity of the femoral head are the key pathogenic mechanisms of SONFH. Fibroblast growth factor 23 (FGF23) levels are not only a biomarker for early vascular lesions caused by abnormal mineral metabolism, but can also act directly on the peripheral vascular system, leading to vascular pathology. The aim of this study was to observe the role of FGF23 on bone microarchitecture and vascular endothelium, and to investigate activation of pyroptosis in SONFH. Lipopolysaccharide (LPS) combined with methylprednisolone (MPS) was applied for SONFH mouse models, and adenovirus was used to increase or decrease the level of FGF23. Micro-CT and histopathological staining were used to observe the structure of the femoral head, and immunohistochemical staining was used to observe the vascular density. The cells were further cultured in vitro and placed in a hypoxic environment for 12 h to simulate the microenvironment of vascular injury during SONFH. The effect of FGF23 on osteogenic differentiation was evaluated using alkaline phosphatase staining, alizarin red S staining and expression of bone formation-related proteins. Matrigel tube formation assay in vitro and immunofluorescence were used to detect the ability of FGF23 to affect endothelial cell angiogenesis. Steroids activated the pyroptosis signaling pathway, promoted the secretion of inflammatory factors in SONFH models, led to vascular endothelial dysfunction and damaged the femoral head structure. In addition, FGF23 inhibited the HUVECs angiogenesis and BMSCs osteogenic differentiation. FGF23 silencing attenuated steroid-induced osteonecrosis of the femoral head by inhibiting the pyroptosis signaling pathway, and promoting osteogenic differentiation of BMSCs and angiogenesis of HUVECs in vitro.
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页数:12
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