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机械振动对牙周膜干细胞成骨的影响。

The Effect of Mechanical Vibration on Osteogenesis of Periodontal Ligament Stem Cells.

机构信息

Microscope Center, Department of Conservative Dentistry and Oral Science Research Center, Yonsei University College of Dentistry, Seoul, Korea.

Oral Science Research Center, Yonsei University College of Dentistry, Seoul, Korea.

出版信息

J Endod. 2021 Nov;47(11):1767-1774. doi: 10.1016/j.joen.2021.08.014. Epub 2021 Sep 4.

Abstract

INTRODUCTION

Appropriate occlusal forces can prevent ankylosis after tooth replantation or transplantation. However, the "proper occlusal forces" on periodontal ligament (PDL) healing have not yet been defined due to insufficient in vitro studies and uncertain in vitro models. Herein, we presented a mechanical vibration device as an in vitro model to determine such favorable occlusal forces.

METHODS

Human periodontal ligament stem cells (hPDLSCs) were exposed to mechanical vibration force with 4 frequencies (30, 90, 150, and 210 rpm). Cell viability and the expression of osteogenic differentiation-related genes and proteins were tested in vitro. The calvarial transplantation experiment was performed to assess the bone formation ability of 150 rpm mechanical vibration stimulation (MVS).

RESULTS

MVS at 150 and 210 rpm significantly reduced cell viability in the early stages. The 150-rpm MVS decreased osteogenic marker expression at the early time point (3 days) but had no harmful effects at the late time point (14 days). Furthermore, hPDLSC cell sheets treated with 150-rpm MVS had potential to decrease bone formation in rat calvarial defects serendipitously and facilitated functional PDL-like tissue formation.

CONCLUSIONS

We found that MVS at a frequency of 150 rpm could provide a strategy for a transient reduction in the osteogenic potential of hPDLSCs and promote PDL-like tissue formation. Thus, 150-rpm MVS could be used as a controllable proper occlusal force to prevent ankylosis and promote PDL healing after tooth replantation or transplantation.

摘要

简介

适当的咬合力量可以防止牙再植或移植后的关节强直。然而,由于体外研究不足和不确定的体外模型,牙周膜(PDL)愈合的“适当咬合力量”尚未确定。在此,我们提出了一种机械振动装置作为体外模型来确定这种有利的咬合力量。

方法

将人牙周膜干细胞(hPDLSCs)暴露于 4 种频率(30、90、150 和 210 rpm)的机械振动力下。体外测试细胞活力和骨向分化相关基因和蛋白的表达。进行颅骨移植实验以评估 150 rpm 机械振动刺激(MVS)的成骨能力。

结果

150 和 210 rpm 的 MVS 在早期显著降低细胞活力。150 rpm 的 MVS 在早期(3 天)降低成骨标志物的表达,但在晚期(14 天)没有不良影响。此外,用 150 rpm MVS 处理的 hPDLSC 细胞片具有意外降低大鼠颅骨缺损中骨形成的潜力,并促进功能性 PDL 样组织形成。

结论

我们发现,频率为 150 rpm 的 MVS 可以提供一种策略,暂时降低 hPDLSCs 的成骨潜力,并促进 PDL 样组织形成。因此,150 rpm 的 MVS 可作为一种可控的适当咬合力量,以防止牙再植或移植后的关节强直并促进 PDL 愈合。

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