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通过Piezo1离子通道异常应力促进颞下颌关节骨关节炎的生物力学机制

Biomechanism of abnormal stress on promoting osteoarthritis of temporomandibular joint through Piezo1 ion channel.

作者信息

Li Meng-Jia, Li Chen-Xi, Li Jia-Yu, Gong Zhong-Cheng, Shao Bo, Zhou Yu-Chuan, Xu Ying-Jie, Jia Meng-Ying

机构信息

Department of Oral and Maxillofacial Oncology and Surgery, School/Hospital of Stomatology, The First Affiliated Hospital of Xinjiang Medical University, Urumqi, China.

Stomatological Research Institute of Xinjiang Uygur Autonomous Region, Urumqi, China.

出版信息

J Oral Rehabil. 2024 Oct;51(10):1935-1946. doi: 10.1111/joor.13777. Epub 2024 Jun 14.

Abstract

OBJECTIVE

This study aimed to investigate whether flow fluid shear stress (FFSS)-mediated signal transduction affects the function of Piezo1 ion channel in chondrocyte and to further explore the role of mechanical overloading in development of temporomandibular joint osteoarthritis (TMJ OA).

METHODS

Immunohistochemical staining was used to determine the expression of Piezo1 in TMJ OA tissue collected from rat unilateral anterior crossbite (UAC) models. Chondrocytes harvested from normal adult SD rats were treated with FFSS (0, 4, 8, 12 dyn/cm) in vitro. Immunofluorescent staining, real-time polymerase chain reaction, western blotting, flow cytometry and phalloidin assay were performed to detect the changes of cellular morphology as well as the expression of Piezo1 and certain pro-inflammatory and degradative factors in chondrocyte.

RESULTS

Immunohistochemical analysis revealed that significantly increased Piezo1 expression was associated with UAC stimulation (p < .05). As applied FFSS escalated (4, 8 and 12 dyn/cm), the expression levels of Piezo1, ADAMTS-5, MMP-13 and Col-X gradually increased, compared with the non-FFSS group (p < .05). Administering Piezo1 ion channel inhibitor to chondrocytes beforehand, it was observed that expression of ADAMTS-5, MMP-13 and Col-X was substantially decreased following FFSS treatment (p < .05) and the effect of cytoskeletal thinning was counteracted. The activated Piezo1 ion channel enhanced intracellular Ca excess in chondrocytes during abnormal mechanical stimulation and the increased intracellular Ca thinned the cytoskeleton of F-actin.

CONCLUSIONS

Mechanical overloading activates Piezo1 ion channel to promote pro-inflammation and degradation and to increase Ca concentration in chondrocyte, which may eventually result in TMJ OA.

摘要

目的

本研究旨在探讨流动流体剪切应力(FFSS)介导的信号转导是否影响软骨细胞中Piezo1离子通道的功能,并进一步探讨机械过载在颞下颌关节骨关节炎(TMJ OA)发展中的作用。

方法

采用免疫组织化学染色法检测大鼠单侧前牙反合(UAC)模型收集的TMJ OA组织中Piezo1的表达。从正常成年SD大鼠中分离的软骨细胞在体外接受FFSS(0、4、8、12达因/平方厘米)处理。进行免疫荧光染色、实时聚合酶链反应、蛋白质印迹、流式细胞术和鬼笔环肽检测,以检测软骨细胞的细胞形态变化以及Piezo1和某些促炎及降解因子的表达。

结果

免疫组织化学分析显示,UAC刺激后Piezo1表达显著增加(p < 0.05)。随着施加的FFSS升高(4、8和12达因/平方厘米),与非FFSS组相比,Piezo1、ADAMTS-5、MMP-13和Col-X的表达水平逐渐升高(p < 0.05)。预先向软骨细胞施用Piezo1离子通道抑制剂,观察到FFSS处理后ADAMTS-5、MMP-13和Col-X的表达显著降低(p < 0.05),并且细胞骨架变薄的效应被抵消。在异常机械刺激期间,激活的Piezo1离子通道增强了软骨细胞内的钙离子过量,而增加的细胞内钙离子使F-肌动蛋白的细胞骨架变薄。

结论

机械过载激活Piezo1离子通道,促进炎症和降解,并增加软骨细胞中的钙离子浓度,这可能最终导致TMJ OA。

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