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FGF23 Regulates Wnt/β-Catenin Signaling-Mediated Osteoarthritis in Mice Overexpressing High-Molecular-Weight FGF2

机译:FGF23调节过表达高分子量FGF2的Wnt /β-Catenin信号介导的骨关节炎

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摘要

Although humans with X-linked hypophosphatemia (XLH) and the Hyp mouse, a murine homolog of XLH, are known to develop degenerative joint disease, the exact mechanism that drives the osteoarthritis (OA) phenotype remains unclear. Mice that overexpress high-molecular-weight fibroblast growth factor (FGF) 2 isoforms (HMWTg mice) phenocopy both XLH and Hyp, including OA with increased FGF23 production in bone and serum. Because HMWTg cartilage also has increased FGF23 and there is cross-talk between FGF23-Wnt/β-catenin signaling, the purpose of this study was to determine if OA observed in HMWTg mice is due to FGF23-mediated canonical Wnt signaling in chondrocytes, given that both pathways are implicated in OA pathogenesis. HMWTg OA joints had decreased Dkk1, Sost, and Lrp6 expression with increased Wnt5a, Wnt7b, Lrp5, Axin2, phospho-GSK3β, Lef1, and nuclear β-catenin, as indicated by immunohistochemistry or quantitative PCR analysis. Chondrocytes from HMWTg mice had enhanced alcian blue and alkaline phosphatase staining as well as increased FGF23, Adamts5, Il-1β, Wnt7b, Wnt16, and Wisp1 gene expression and phospho-GSK3β protein expression as indicated by Western blot, compared with chondrocytes of vector control and chondrocytes from mice overexpressing the low-molecular-weight isoform, which were protected from OA. Canonical Wnt inhibitor treatment rescued some of those parameters in HMWTg chondrocytes, seemingly delaying the initially accelerated chondrogenic differentiation. FGF23 neutralizing antibody treatment was able to partly ameliorate OA abnormalities in subchondral bone and reduce degradative/hypertrophic chondrogenic marker expression in HMWTg joints in vivo. These results demonstrate that osteoarthropathy of HMWTg is at least partially due to FGF23-modulated Wnt/β-catenin signaling in chondrocytes.
机译:尽管已知患有X连锁低磷血症(XLH)的人类和XLH的鼠同系物Hyp小鼠会发生退行性关节疾病,但驱动骨关节炎(OA)表型的确切机制仍不清楚。过度表达高分子量成纤维细胞生长因子(FGF)2亚型(HMWTg小鼠)的小鼠在表型上均检查XLH和Hyp,包括在骨和血清中FGF23产量增加的OA。因为HMWTg软骨也增加了FGF23且FGF23-Wnt /β-catenin信号之间存在串扰,所以本研究的目的是确定在HMWTg小鼠中观察到的OA是否是由于FGF23介导的软骨细胞中的经典Wnt信号引起的。这两种途径都与OA的发病机制有关。 HMWTg OA关节的Dkk1,Sost和Lrp6表达降低,而Wnt5a,Wnt7b,Lrp5,Axin2,磷酸化GSK3β,Lef1和核β-连环蛋白表达增加,如免疫组织化学或定量PCR分析所示。与载体对照的软骨细胞相比,HMWTg小鼠的软骨细胞具有增强的阿尔辛蓝和碱性磷酸酶染色,以及FGF23,Adamts5,II-1β,Wnt7b,Wnt16和Wisp1基因表达以及磷酸化GSK3β蛋白表达的增强(如Western blot所示)小鼠的软骨细胞过表达低分子量同种型,可保护其免受OA侵害。规范的Wnt抑制剂治疗挽救了HMWTg软骨细胞中的某些参数,似乎延迟了最初加速的软骨形成分化。 FGF23中和抗体治疗能够部分缓解软骨下骨中的OA异常并减少体内HMWTg关节中降解/肥大性软骨生成标记物的表达。这些结果证明HMWTg的骨关节炎至少部分归因于软骨细胞中的FGF23调节的Wnt /β-连环蛋白信号传导。

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