Division of Physiology, Kyushu Dental University, Fukuoka, Japan.
Division of Orofacial Functions and Orthodontics, Kyushu Dental University, Fukuoka, Japan.
Eur J Orthod. 2023 Sep 18;45(5):565-574. doi: 10.1093/ejo/cjad052.
Orthodontic mechanical force on the periodontal ligament induces extracellular adenosine triphosphate (ATP) release. However, mechanosensitive molecules have not been confirmed functionally in periodontal ligament cells. In the present study, we examined the roles of mechanosensitive PIEZO channels in the mechanically stimulated release of ATP in human periodontal ligament fibroblasts (HPdLFs).
To examine PIEZO expression in HPdLFs, we performed reverse transcription-quantitative polymerase chain reaction, fluorescent immunostaining, and Ca2+ imaging. ATP concentrations were measured in culture medium after applications of the PIEZO1 agonist Yoda1 and compression force in a newly developed in vitro weight-loaded cell model (IVWLC) using balance weights and a 48-well plate. The mechanosensitive channel inhibitor GsMTx4 and the ATP-releasing route inhibitors clodronic acid, meclofenamic acid, and probenecid were used. To suppress PIEZO1 expression, short interference RNA (siRNA) treatment of the PIEZO1 gene was performed.
PIEZO1 mRNA was expressed more abundantly than PIEZO2 mRNA in HPdLFs. HPdLF cell bodies were immunoreactive to anti-PIEZO1 antibody. Yoda1 increased intracellular Ca2+ and extracellular ATP concentrations in a dose-dependent manner. ATP release was inhibited by GsMTx4 and inhibitors of ATP release routes. In the IVWLC, HPdLFs released ATP in response to compression force but not in response to hypoxic stimulation that was simultaneously applied to cells. Mechanically stimulated ATP release was inhibited by GsMTx4, inhibitors of ATP-releasing routes and siRNA treatment of PIEZO1.
PIEZO1 on the cell membranes of HPdLFs is activated by compression force and then induces ATP release via intracellular Ca2+-dependent exocytosis and ATP-permeable channels.
正畸机械力作用于牙周韧带会引起细胞外三磷酸腺苷(ATP)的释放。然而,机械敏感分子在牙周韧带细胞中的功能尚未得到证实。在本研究中,我们研究了机械敏感的 PIEZO 通道在人牙周韧带成纤维细胞(HPdLFs)中机械刺激 ATP 释放中的作用。
为了检测 HPdLFs 中 PIEZO 的表达,我们进行了反转录定量聚合酶链反应、荧光免疫染色和 Ca2+成像。应用 PIEZO1 激动剂 Yoda1 和在新开发的体外加载细胞模型(IVWLC)中应用平衡砝码和 48 孔板施加的压缩力,测量培养基中的 ATP 浓度。使用机械敏感通道抑制剂 GsMTx4 以及 ATP 释放途径抑制剂氯膦酸、甲氯芬酸和丙磺舒。为了抑制 PIEZO1 表达,对 PIEZO1 基因进行了短干扰 RNA(siRNA)处理。
HPdLFs 中 PIEZO1 mRNA 的表达量明显多于 PIEZO2 mRNA。HPdLF 细胞体对抗 PIEZO1 抗体呈免疫反应性。Yoda1 以剂量依赖性方式增加细胞内 Ca2+和细胞外 ATP 浓度。ATP 释放被 GsMTx4 和 ATP 释放途径抑制剂抑制。在 IVWLC 中,HPdLFs 对压缩力作出反应而释放 ATP,但对同时施加于细胞的缺氧刺激没有反应。GsMTx4、ATP 释放途径抑制剂和 PIEZO1 的 siRNA 处理抑制了机械刺激的 ATP 释放。
HPdLFs 细胞膜上的 PIEZO1 被压缩力激活,然后通过细胞内 Ca2+依赖性胞吐和 ATP 通透通道诱导 ATP 释放。