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Sirt1/FOXO信号通路通过调节线粒体功能障碍和成骨分化参与调控骨髓炎的进展。

The Sirt1/FOXO signal pathway involves in regulating osteomyelitis progression via modulating mitochondrial dysfunctions and osteogenic differentiation.

作者信息

Zhang Runyao, Kou Nannan, Liu Feifei, Tong Huan, Li Shaobo, Ren Lirong

机构信息

Department of Orthopedics, Guiqian International Hospital, No. 1 Dongfeng Avenue, Wudang District, Guiyang City, Guizhou Province, People's Republic of China.

Department of Traumatology, The Second Affiliated Hospital of Kunming Medical University, No. 374, Dianmian Avenue. Wuhua District, Kunming City, Yunnan Province, People's Republic of China.

出版信息

J Mol Histol. 2025 Feb 13;56(2):87. doi: 10.1007/s10735-025-10370-1.

Abstract

The Sirtuin-1 (Sirt1) gene has been reported to be closely associated with the progression of multiple diseases, but its role in regulating osteomyelitis (OM) pathogenesis has not been explored. The murine long bone-derived osteocyte-like MLO-Y4 cells and osteoblast-like MC3T3-E1 cells were exposed to Staphylococcal protein A (SpA) treatment to establish the in vitro OM models. The expression levels of Osteoblast-specific genes (OCN, OPN and RUNX2), osteoclastic genes (CTSK, MMP9 and ACP5) and the FOXO pathway-related proteins (FOXO1, p-FOXO1, FOXO3 and p-FOXO3) were detected by performing Real-Time qPCR and Western Blot analysis. Osteoblastic differentiation of the cells were evaluated by using the alizarin red S staining assay and TRAP staining assay, and membrane potential and superoxide production were measured to evaluate the mitochondrial functions of the cells. SpA treatment significantly suppressed osteogenic differentiation and induced mitochondrial dysfunction in MLO-Y4 and MC3T3-E1 cells, and promoting osteoclastogenesis in RAW264.7 cells, suggesting that the in vitro OM models were successfully established. Of note, SpA decreased the expression levels of Sirt1 in the OM cells, and SpA-induced detrimental effects on the OM cells were all reversed by overexpressing Sirt1. Mechanistically, Sirt1-overexpression increased the levels of phosphorylated FOXO-related proteins (p-FOXO1 and p-FOXO3) to activate the FOXO signal pathway and ameliorated OM progression in SpA-treated cells. Collectively, it was revealed in the present study that overexpression of Sirt1 activated the FOXO signal pathway to ameliorate SpA-induced detrimental effects in the OM cells, and Sirt1 could be potentially used as therapeutic agent for OM in clinic.

摘要

据报道,沉默调节蛋白1(Sirt1)基因与多种疾病的进展密切相关,但其在调节骨髓炎(OM)发病机制中的作用尚未得到探索。将源自小鼠长骨的骨细胞样MLO-Y4细胞和成骨细胞样MC3T3-E1细胞暴露于葡萄球菌蛋白A(SpA)处理,以建立体外OM模型。通过实时定量PCR和蛋白质免疫印迹分析检测成骨细胞特异性基因(骨钙素、骨桥蛋白和RUNX2)、破骨细胞基因(组织蛋白酶K、基质金属蛋白酶9和抗酒石酸酸性磷酸酶5)以及FOXO信号通路相关蛋白(FOXO1、磷酸化FOXO1、FOXO3和磷酸化FOXO3)的表达水平。使用茜素红S染色试验和抗酒石酸酸性磷酸酶染色试验评估细胞的成骨分化,并测量膜电位和超氧化物产生以评估细胞的线粒体功能。SpA处理显著抑制MLO-Y4和MC T3-E1细胞的成骨分化并诱导线粒体功能障碍,同时促进RAW264.7细胞的破骨细胞生成,表明成功建立了体外OM模型。值得注意的是,SpA降低了OM细胞中Sirt1的表达水平,而过表达Sirt1可逆转SpA对OM细胞的有害影响。从机制上讲,Sirt1过表达增加了磷酸化FOXO相关蛋白(磷酸化FOXO1和磷酸化FOXO3)的水平,以激活FOXO信号通路并改善SpA处理细胞中的OM进展。总的来说,本研究表明,Sirt1过表达激活FOXO信号通路以改善SpA诱导的OM细胞有害影响,并且Sirt1在临床上可能用作OM的治疗剂。

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