Yang Hong, Shan Di, Jin Yu, Liang Hengyan, Liu Lu, Guan Yuzhe, Chen Chen, Luo Qiyue, Yang Yuting, Lai Wenli, Long Hu
State Key Laboratory of Oral Diseases & National Clinical Research Center for Oral Diseases & Department of Orthodontics, West China Hospital of Stomatology, Sichuan University, China.
Department of Orthodontics, Northwest Minzu University, China.
Neuroscience. 2020 Aug 21;442:274-285. doi: 10.1016/j.neuroscience.2020.06.023. Epub 2020 Jun 24.
This study aimed to explore the role of acid-sensing ion channel 3 (ASIC3) in the modulation of tooth mechanical hyperalgesia induced by orthodontic tooth movement. In male Sprague-Dawley rats, closed coil springs were ligated between mandibular incisors and molars to mimic orthodontic tooth movement. Bite force was assessed to evaluate tooth mechanical hyperalgesia. The alveolar bone, trigeminal ganglia, and trigeminal nucleus caudalis underwent immunohistochemical staining and immunoblotting for ASIC3. The inferior alveolar nerves were transected to explore the interaction between the periodontal sensory endings and trigeminal ganglia. The role of ASIC3 in trigeminal ganglia was further explored with lentivirus-mediated ASIC3 ribonucleic acid interference. Results showed that ASIC3 was expressed in the periodontal Ruffini endings and expression of ASIC3 protein was elevated in periodontal tissues, trigeminal ganglia, and trigeminal nucleus caudalis, following orthodontic tooth movement. ASIC3 agonists and antagonists significantly aggravated and mitigated tooth mechanical hyperalgesia, respectively. ASIC3 expression decreased after inferior alveolar nerve transection in periodontal tissues. Both in vitro and vivo, the lentivirus vector carrying ASIC3 shRNA inhibited ASIC3 expression and relieved tooth mechanical hyperalgesia. To conclude, ASIC3 is important in the modulation of tooth mechanical hyperalgesia induced by orthodontic tooth movement. Further, the role of ASIC3 in the modulation of pain in periodontal tissues is regulated by trigeminal ganglia. An adjuvant analgesic therapy targeting ASIC3 could alleviate orthodontic movement-associated mechanical hyperalgesia in rats.
本研究旨在探讨酸敏感离子通道3(ASIC3)在正畸牙齿移动诱导的牙齿机械性痛觉过敏调节中的作用。在雄性Sprague-Dawley大鼠中,在下颌切牙和磨牙之间结扎闭合螺旋弹簧以模拟正畸牙齿移动。评估咬合力以评价牙齿机械性痛觉过敏。对牙槽骨、三叉神经节和三叉神经尾侧核进行ASIC3免疫组织化学染色和免疫印迹分析。切断下牙槽神经以探讨牙周感觉末梢与三叉神经节之间的相互作用。利用慢病毒介导的ASIC3核糖核酸干扰进一步探究ASIC3在三叉神经节中的作用。结果显示,ASIC3在牙周鲁菲尼末梢表达,正畸牙齿移动后,ASIC3蛋白在牙周组织、三叉神经节和三叉神经尾侧核中的表达升高。ASIC3激动剂和拮抗剂分别显著加重和减轻牙齿机械性痛觉过敏。切断下牙槽神经后,牙周组织中ASIC3表达下降。在体外和体内,携带ASIC3短发夹RNA的慢病毒载体均抑制ASIC3表达并减轻牙齿机械性痛觉过敏。总之,ASIC3在正畸牙齿移动诱导的牙齿机械性痛觉过敏调节中起重要作用。此外,ASIC3在牙周组织疼痛调节中的作用受三叉神经节调控。靶向ASIC3的辅助镇痛疗法可减轻大鼠正畸移动相关的机械性痛觉过敏。