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FoxOs、Wnts 和氧化应激诱导的骨丢失:牙周炎领域的新角色?

FoxOs, Wnts and oxidative stress-induced bone loss: new players in the periodontitis arena?

机构信息

Department of Internal Medicine Unit of Periodontology, University of Parma, Parma, Italy.

出版信息

J Periodontal Res. 2011 Aug;46(4):397-406. doi: 10.1111/j.1600-0765.2011.01354.x. Epub 2011 Feb 17.

Abstract

BACKGROUND AND OBJECTIVE

Chronic periodontitis is a widespread disease affecting tooth-supporting structures that can lead to extensive loss of periodontal ligament and bone, ultimately resulting in tooth loss. Extensive evidence has demonstrated a strong association between age, metabolic disorders such as type II diabetes, oxidative stress and alveolar bone loss. The molecular players controlling bone maintenance and underlying age-related bone loss and its links to the general metabolism are currently the object of intense research.

MATERIAL AND METHODS

Recent findings are summarized to elucidate the molecular mechanisms linking oxidative stress, bone loss and metabolic factors.

RESULTS

It is well known that reactive oxygen species are an inevitable consequence of cellular respiration and that organisms have developed an efficient array of defenses against them. The core of this complex defense line is a family of transcription factors, known as FoxOs, which can bind to β-catenin and initiate a transcriptional programme regulating cell apoptosis, DNA repair and degradation of reactive oxygen species. An increase in reactive oxygen species due, for example, to age or insulin resistance, generates a situation in which bone formation is impaired by activation of FoxO, and a decrease in Wnt signaling and bone resorption are promoted.

CONCLUSION

The balance between FoxO and the Wnt pathway is finely tuned by systemic and local factors, creating a far-reaching mechanism that dictates the fate of mesenchymal progenitors and regulates the homeostasis of bone, providing a rationale for the impairment of systemic and alveolar bone maintenance clinically observed with age and metabolic diseases.

摘要

背景与目的

慢性牙周炎是一种广泛影响牙齿支持结构的疾病,可导致牙周韧带和骨广泛丧失,最终导致牙齿脱落。大量证据表明,年龄、II 型糖尿病等代谢紊乱、氧化应激和牙槽骨丧失之间存在很强的关联。控制骨维持以及与年龄相关的骨丢失及其与一般代谢之间联系的分子参与者是目前研究的重点。

材料与方法

总结了最近的发现,以阐明氧化应激、骨丢失和代谢因素之间的分子机制。

结果

众所周知,活性氧是细胞呼吸的必然产物,生物体已经开发出一系列有效的防御机制来对抗它们。这个复杂防御线的核心是一组转录因子,称为 FoxO,它可以与β-连环蛋白结合,并启动一个调节细胞凋亡、DNA 修复和活性氧降解的转录程序。例如,由于年龄或胰岛素抵抗导致活性氧增加,会导致 FoxO 激活,从而损害骨形成,并促进 Wnt 信号转导和骨吸收减少。

结论

FoxO 和 Wnt 通路之间的平衡受全身和局部因素的精细调节,形成了一个深远的机制,决定了间充质祖细胞的命运,并调节骨的动态平衡,为年龄和代谢疾病导致的全身和牙槽骨维持受损提供了合理的依据。

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