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ERK 和 AKT 的基因表达和磷酸化受机械力和鼠 cementoblasts 细胞融合的调节。

Gene expression and phosphorylation of ERK and AKT are regulated depending on mechanical force and cell confluence in murine cementoblasts.

机构信息

Department of Orthodontics, Dental Clinic, University of Aachen, Germany.

Department of Orthodontics, Dental Clinic, University of Aachen, Germany.

出版信息

Ann Anat. 2021 Mar;234:151668. doi: 10.1016/j.aanat.2020.151668. Epub 2021 Jan 2.

Abstract

Cementoblasts, located on the tooth root surface covered with cementum, are considered to have tooth protecting abilities. They prevent tissue damage and secure teeth anchorage inside the periodontal ligament during mechanical stress. However, the involvement of cementoblasts in mechanical compression induced periodontal remodeling needs to be identified and better understood. Here, we investigated the effect of static compressive stimulation, simulating the compression side of orthodontic force and cell confluence on a murine cementoblast cell line (OC/CM). The influence of cell confluence in cementoblast cells was analyzed by MTS assay and immunostaining. Furthermore, mRNA and protein expression were investigated by real-time RT-PCR and western blotting at different confluence grades and after mechanical stimulation. We observed that cementoblast cell proliferation increases with increasing confluence grades, while cell viability decreases in parallel. Gene expression of remodeling markers is regulated by compressive force. In addition, cementoblast confluence plays a crucial role in this regulation. Confluent cementoblasts show a significantly higher basal expression of Bsp, Osterix, Alpl, Vegfa, Mmp9, Tlr2 and Tlr4 compared to sub-confluent cells. After compressive force of 48 h at 60% confluence, an upregulation of Bsp, Osterix, Alpl, Vegf and Mmp9 is observed. In contrast, at high confluence, all analyzed genes were downregulated through mechanical stress. We also proved a regulation of ERK, phospho-ERK and phospho-AKT dependent on compressive force. In summary, our findings provide evidence that cementoblast physiology and metabolism is highly regulated in a cell confluence-dependent manner and by mechanical stimulation.

摘要

成牙骨质细胞位于被牙骨质覆盖的牙根表面,被认为具有护牙能力。它们在机械应力下,防止组织损伤并确保牙周韧带内的牙齿固定。然而,需要确定并更好地理解成牙骨质细胞在机械压缩诱导的牙周重塑中的作用。在这里,我们研究了静态压缩刺激(模拟正畸力的压缩侧和细胞汇合)对鼠类成牙骨质细胞系(OC/CM)的影响。通过 MTS 测定和免疫染色分析了细胞汇合对成牙骨质细胞的影响。此外,通过实时 RT-PCR 和 Western blot 在不同汇合度和机械刺激后,研究了 mRNA 和蛋白表达。我们观察到,成牙骨质细胞的增殖随着汇合度的增加而增加,而细胞活力则平行下降。重塑标志物的基因表达受压缩力调节。此外,成牙骨质细胞的汇合度在这种调节中起着关键作用。与亚汇合细胞相比,汇合的成牙骨质细胞中 Bsp、Osterix、Alpl、Vegfa、Mmp9、Tlr2 和 Tlr4 的基础表达明显更高。在 60%汇合度下,经 48 小时压缩力处理后,观察到 Bsp、Osterix、Alpl、Vegf 和 Mmp9 的上调。相比之下,在高汇合度下,所有分析的基因都通过机械应激下调。我们还证明了 ERK、磷酸化-ERK 和磷酸化-AKT 的调节依赖于压缩力。总之,我们的研究结果表明,成牙骨质细胞的生理学和代谢受到细胞汇合度和机械刺激的高度调节。

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