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超咬合通过 CCL2 表达刺激破骨细胞生成。

Hyperocclusion stimulates osteoclastogenesis via CCL2 expression.

机构信息

Department of Dental Hygiene, Fukuoka College of Health Sciences, Fukuoka 8140193, Japan.

出版信息

J Dent Res. 2011 Jun;90(6):793-8. doi: 10.1177/0022034511400742. Epub 2011 Mar 10.

Abstract

Excessive mechanical stress (MS) during hyperocclusion is known to result in disappearance of the alveolar hard line, enlargement of the periodontal ligament (PDL) space, and destruction of alveolar bone, leading to occlusal traumatism. We hypothesized that MS induces expression of osteoclastogenesis-associated chemokines in PDL tissue, resulting in chemotaxis and osteoclastogenesis during occlusal traumatism. We examined the effect of MS on relationships between chemokine expression and osteoclastogenesis using in vivo and in vitro hyperocclusion models. In an in vitro model, intermittent stretching-induced MS was shown to up-regulate the expression of CC chemokine ligand (CCL)2, CCL3, and CCL5 in PDL cells. The expression levels of CCL2 in PDL tissues, its receptor CCR2 in pre-osteoclasts, and tartrate-resistant acid-phosphatase-positive cells in alveolar bone were significantly up-regulated 4-7 days after excessive MS during hyperocclusion in in vivo rodent models. Hyperocclusion predominantly induced CCL2 expression in PDL tissues and promoted chemotaxis and osteoclastogenesis, leading to MS-dependent alveolar bone destruction during occlusal traumatism.

摘要

过度的机械应力 (MS) 在咬合过度时已知会导致牙槽硬板消失、牙周韧带 (PDL) 空间扩大和牙槽骨破坏,导致咬合创伤。我们假设 MS 会在 PDL 组织中诱导破骨细胞生成相关趋化因子的表达,从而导致在咬合创伤期间趋化和破骨细胞生成。我们使用体内和体外咬合过度模型检查了 MS 对趋化因子表达和破骨细胞生成之间关系的影响。在体外模型中,间歇拉伸诱导的 MS 被证明可上调 PDL 细胞中 CC 趋化因子配体 (CCL)2、CCL3 和 CCL5 的表达。在体内啮齿动物模型中,过度 MS 期间的咬合过度后 4-7 天,PDL 组织中 CCL2 的表达水平、破骨前体细胞中的 CCR2 及其在牙槽骨中的抗酒石酸酸性磷酸酶阳性细胞均显著上调。咬合过度主要在 PDL 组织中诱导 CCL2 表达,并促进趋化和破骨细胞生成,导致咬合创伤期间 MS 依赖性牙槽骨破坏。

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