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在小鼠咬合加载过程中,骨膜蛋白对于牙周韧带的完整性和功能至关重要。

Periostin is essential for the integrity and function of the periodontal ligament during occlusal loading in mice.

作者信息

Rios H F, Ma D, Xie Y, Giannobile W V, Bonewald L F, Conway S J, Feng J Q

机构信息

Department of Periodontics and Oral Medicine, School of Dentistry, University of Michigan, Ann Arbor, MI 48109-1078, USA.

出版信息

J Periodontol. 2008 Aug;79(8):1480-90. doi: 10.1902/jop.2008.070624.

Abstract

BACKGROUND

The ability of the periodontal ligament (PDL) to absorb and distribute forces is necessary for periodontal homeostasis. This adaptive response may be determined, in part, by a key molecule, periostin, which maintains the integrity of the PDL during occlusal function and inflammation. Periostin is primarily expressed in the PDL and is highly homologous to betaig-H3 (transforming growth factor-beta [TGF-beta] inducible gene). Cementum, alveolar bone, and the PDL of periostin-null mice dramatically deteriorate following tooth eruption. The purpose of this study was to determine the role of periostin in maintaining the functional integrity of the periodontium.

METHODS

The periodontia from periostin-null mice were characterized followed by unloading the incisors. The effect of substrate stretching on periostin expression was evaluated using a murine PDL cell line. Real-time reverse transcription-polymerase chain reaction was used to quantify mRNA levels of periostin and TGF-beta. TGF-beta1 neutralizing antibodies were used to determine whether the effects of substrate stretching on periostin expression are mediated through TGF-beta.

RESULTS

Severe periodontal defects were observed in the periostin-null mice after tooth eruption. The removal of masticatory forces in periostin-null mice rescue the periodontal defects. Periostin expression was increased in strained PDL cells by 9.2-fold at 48 hours and was preceded by a transient increase in TGF-beta mRNA in vitro. Elevation of periostin in response to mechanical stress was blocked by the addition of 2.5 ng/ml neutralizing antibody to TGF-beta1, suggesting that mechanical strain activates TGF-beta to have potential autocrine effects and to increase periostin expression.

CONCLUSION

Mechanical loading maintains sufficient periostin expression to ensure the integrity of the periodontium in response to occlusal load.

摘要

背景

牙周膜(PDL)吸收和分散力的能力对于牙周组织的稳态是必需的。这种适应性反应可能部分由关键分子骨膜蛋白决定,骨膜蛋白在咬合功能和炎症过程中维持牙周膜的完整性。骨膜蛋白主要在牙周膜中表达,并且与βig-H3(转化生长因子-β [TGF-β]诱导基因)高度同源。在牙萌出后,骨膜蛋白基因敲除小鼠的牙骨质、牙槽骨和牙周膜显著退化。本研究的目的是确定骨膜蛋白在维持牙周组织功能完整性中的作用。

方法

对骨膜蛋白基因敲除小鼠的牙周组织进行特征描述,随后拔除切牙。使用小鼠牙周膜细胞系评估底物拉伸对骨膜蛋白表达的影响。实时逆转录-聚合酶链反应用于定量骨膜蛋白和TGF-β的mRNA水平。使用TGF-β1中和抗体来确定底物拉伸对骨膜蛋白表达的影响是否通过TGF-β介导。

结果

在牙萌出后,骨膜蛋白基因敲除小鼠出现严重的牙周缺陷。去除骨膜蛋白基因敲除小鼠的咀嚼力可挽救牙周缺陷。在体外,拉伸的牙周膜细胞中骨膜蛋白表达在48小时时增加了9.2倍,并且之前TGF-β mRNA有短暂增加。添加2.5 ng/ml的TGF-β1中和抗体可阻断机械应力引起的骨膜蛋白升高,这表明机械应变激活TGF-β产生潜在的自分泌作用并增加骨膜蛋白表达。

结论

机械负荷维持足够的骨膜蛋白表达,以确保牙周组织在咬合负荷下的完整性。

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