Department of Endodontics, University of Texas Health Science Center at San Antonio, San Antonio, TX, USA.
Mol Pain. 2020 Jan-Dec;16:1744806919900725. doi: 10.1177/1744806919900725.
Infection-induced chronic pain is an under-studied pain condition. One example is apical periodontitis, which evokes considerable mechanical allodynia that persists after treatment in 7% to 12% of patients. Available analgesics often provide incomplete relief. However, a preclinical model to study pain mechanisms associated with apical periodontitis is not available. Here, we report a mouse model of apical periodontitis to facilitate studies determining mechanisms mediating persistent infection-induced pain. Mice were anesthetized and the left first molar was exposed to the oral environment for six weeks. Bone resorption, as an indicator of apical periodontitis, was quantified using microcomputed tomography. Mechanical allodynia was determined using extraoral von-Frey filaments in both male and female mice. The expression of in the medullary dorsal horn was assessed using immunohistochemistry. Mice with apical periodontitis developed significant mechanical allodynia by day 7 that was maintained for 42 days. Mechanical thresholds were significantly lower in females compared to males. Administration of ibuprofen, morphine, or MK-801 reversed mechanical allodynia. Finally, apical periodontitis triggered an upregulation of in the medullary dorsal horn. Collectively, this model simulates signs of clinical pain experienced by patients with apical periodontitis, detects sex differences in allodynia, and permits the study of peripheral and central trigeminal pain mechanisms.
感染引起的慢性疼痛是一种研究不足的疼痛状况。例如,根尖周炎会引起相当大的机械性痛觉过敏,在 7%至 12%的患者中,这种痛觉过敏在治疗后仍然存在。现有的镇痛药往往不能提供完全缓解。然而,目前还没有用于研究与根尖周炎相关的疼痛机制的临床前模型。在这里,我们报告了一种根尖周炎的小鼠模型,以促进研究确定介导持续性感染引起的疼痛的机制。小鼠被麻醉,然后将其左侧第一磨牙暴露于口腔环境中六周。使用微计算机断层扫描来量化作为根尖周炎指标的骨质吸收。使用口腔外冯-弗雷纤维在雄性和雌性小鼠中确定机械性痛觉过敏。使用免疫组织化学评估 在髓背角中的表达。患有根尖周炎的小鼠在第 7 天出现明显的机械性痛觉过敏,并持续 42 天。与雄性相比,雌性的机械阈值明显较低。给予布洛芬、吗啡或 MK-801 可逆转机械性痛觉过敏。最后,根尖周炎引发了髓背角中 的上调。总的来说,该模型模拟了根尖周炎患者所经历的临床疼痛的迹象,检测到痛觉过敏的性别差异,并允许研究三叉神经的外周和中枢疼痛机制。