FoxO1 调节的巨噬细胞极化通过 PPAR-γ 信号调节成骨作用。

FoxO1-modulated macrophage polarization regulates osteogenesis via PPAR-γ signaling.

机构信息

State Key Laboratory of Oral Diseases & National Center for Stomatology & National Clinical Research Center for Oral Diseases, Department of Oral Implantology, West China Hospital of Stomatology, Sichuan University, Chengdu 610041, Sichuan, China.

State Key Laboratory of Oral Diseases & National Center for Stomatology & National Clinical Research Center for Oral Diseases, Department of Oral and Maxillofacial Surgery, West China Hospital of Stomatology, Sichuan University, Chengdu 610041, Sichuan, China.

出版信息

Biochim Biophys Acta Mol Basis Dis. 2024 Oct;1870(7):167333. doi: 10.1016/j.bbadis.2024.167333. Epub 2024 Jul 1.

Abstract

Periodontitis, a common chronic inflammatory disease, epitomizes a significant impairment in the host immune system and an imbalance of bone metabolism. Macrophage polarization, a dynamic process dictated by the microenvironment, intricately contributes to the interplay between the immune system and bone remodeling, namely the osteoimmune system. Forkhead box protein O1 (FoxO1) has been shown to play a dramatic role in mediating oxidative stress, bone mass, as well as cellular metabolism. Nevertheless, the function and underlying mechanisms of FoxO1 in regulating macrophage polarization-mediated osteogenesis in periodontitis remain to be further elucidated. Here, we found that FoxO1 expression was closely linked to periodontitis, accompanied by aggravated inflammation. Notably, FoxO1 knockdown skewed macrophage polarization from M1 to the antiinflammatory M2 phenotype under inflammatory conditions, which rescued the impaired osteogenic potential. Mechanistically, we revealed that the enhancement of the transcription of peroxisome proliferator-activated receptor (PPAR) signaling in FoxO1-knockdown macrophages. In agreement with this contention, GW9662, a specific inhibitor of PPAR-γ signaling, greatly aggravated macrophage polarization from M2 to the M1 phenotype and attenuated osteogenic potential under inflammatory conditions. Additionally, PPAR-γ signaling agonist rosiglitazone (RSG) was applied to address ligature-induced periodontitis with attenuated inflammation. Our data lend conceptual credence to the function of FoxO1 in mediating macrophage polarization-regulated osteogenesis which serves as a novel therapeutic target for periodontitis.

摘要

牙周炎是一种常见的慢性炎症性疾病,代表着宿主免疫系统的严重损伤和骨代谢失衡。巨噬细胞极化是一个由微环境决定的动态过程,它与免疫系统和骨重塑(即骨免疫)之间的相互作用密切相关。叉头框蛋白 O1(FoxO1)已被证明在介导氧化应激、骨量以及细胞代谢方面发挥着重要作用。然而,FoxO1 在调节牙周炎中巨噬细胞极化介导的成骨作用中的功能和潜在机制仍有待进一步阐明。在这里,我们发现 FoxO1 的表达与牙周炎密切相关,同时伴随着炎症的加重。值得注意的是,FoxO1 敲低在炎症条件下使巨噬细胞从 M1 极化为抗炎的 M2 表型,从而挽救了受损的成骨潜能。在机制上,我们揭示了 FoxO1 敲低巨噬细胞中过氧化物酶体增殖物激活受体(PPAR)信号的转录增强。与此一致的是,PPAR-γ 信号的特异性抑制剂 GW9662 在炎症条件下极大地加剧了巨噬细胞从 M2 向 M1 表型的极化,并减弱了成骨潜能。此外,还应用了 PPAR-γ 信号激动剂罗格列酮(RSG)来减轻结扎诱导的牙周炎的炎症。我们的数据为 FoxO1 在调节巨噬细胞极化调节成骨作用中的功能提供了概念上的可信度,这为牙周炎提供了一个新的治疗靶点。

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