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机械力通过 TRPV4 调节牙周韧带干细胞在骨重塑过程中的特征。

Mechanical force modulates periodontal ligament stem cell characteristics during bone remodelling via TRPV4.

机构信息

Laboratory of Biomimetic Nanomaterials, Department of Orthodontics, Peking University School and Hospital of Stomatology, National Engineering Laboratory for Digital and Material Technology of Stomatology, Beijing Key Laboratory of Digital Stomatology, Beijing, China.

Fourth Division, Peking University Hospital of Stomatology, Beijing, China.

出版信息

Cell Prolif. 2020 Oct;53(10):e12912. doi: 10.1111/cpr.12912. Epub 2020 Sep 22.

Abstract

OBJECTIVES

Mechanical force plays an important role in modulating stem cell fate and behaviours. However, how periodontal ligament stem cells (PDLSCs) perceive mechanical stimulus and transfer it into biological signals, and thereby promote alveolar bone remodelling, is unclear.

MATERIALS AND METHODS

An animal model of force-induced tooth movement and a compressive force in vitro was used. After force application, tooth movement distance, mesenchymal stem cell and osteoclast number, and proinflammatory cytokine expression were detected in periodontal tissues. Then, rat primary PDLSCs with or without force loading were isolated, and their stem cell characteristics including clonogenicity, proliferation, multipotent differentiation and immunoregulatory properties were evaluated. Under compressive force in vitro, the effects of the ERK signalling pathway on PDLSC characteristics were evaluated by Western blotting.

RESULTS

Mechanical force in vivo induced PDLSC proliferation, which was accompanied with inflammatory cytokine accumulation, osteoclast differentiation and TRPV4 activation; the force-stimulated PDLSCs showed greater clonogenicity and proliferation, reduced differentiation ability, improved induction of macrophage migration, osteoclast differentiation and proinflammatory factor expression. The biological changes induced by mechanical force could be partially suppressed by TRPV4 inhibition. Mechanistically, force-induced activation of TRPV4 in PDLSCs regulated osteoclast differentiation by affecting the RANKL/OPG system via ERK signalling.

CONCLUSIONS

Taken together, we show here that TRPV4 activation in PDLSCs under mechanical force contributes to changing their stem cell characteristics and modulates bone remodelling during tooth movement.

摘要

目的

机械力在调节干细胞命运和行为方面起着重要作用。然而,牙周膜干细胞(PDLSCs)如何感知机械刺激并将其转化为生物信号,从而促进牙槽骨重塑,目前尚不清楚。

材料与方法

采用力诱导牙齿移动动物模型和体外压缩力。力作用后,检测牙周组织中的牙齿移动距离、间充质干细胞和破骨细胞数量以及促炎细胞因子表达。然后,分离有或没有力加载的大鼠原代 PDLSCs,并评估其干细胞特性,包括克隆形成能力、增殖、多能分化和免疫调节特性。在体外压缩力下,通过 Western blot 评估 ERK 信号通路对 PDLSC 特性的影响。

结果

体内机械力诱导 PDLSC 增殖,伴随着炎症细胞因子积累、破骨细胞分化和 TRPV4 激活;受机械力刺激的 PDLSCs 表现出更强的克隆形成能力和增殖能力、降低的分化能力、增强的巨噬细胞迁移诱导能力、破骨细胞分化和促炎因子表达。TRPV4 抑制可部分抑制机械力诱导的生物学变化。机制上,PDLSCs 中机械力诱导的 TRPV4 激活通过 ERK 信号通路影响 RANKL/OPG 系统来调节破骨细胞分化。

结论

综上所述,我们在这里表明,机械力下 PDLSCs 中 TRPV4 的激活有助于改变其干细胞特性,并调节牙齿移动过程中的骨重塑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb06/7574874/4daf988dc286/CPR-53-e12912-g001.jpg

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