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Malocclusion Generates Anxiety-Like Behavior Through a Putative Lateral Habenula–Mesencephalic Trigeminal Nucleus Pathway

机译:咬合不正通过推定的侧Ha肌-中脑三叉神经核通路产生类似焦虑的行为

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摘要

Malocclusion is an important risk factor for temporomandibular disorder (TMD), a series of disorders characterized by dysfunction in the orofacial region involving the temporomandibular joint (TMJ) and jaw muscles. We recently showed that experimental unilateral anterior crossbite (UAC) produced masseter hyperactivity through a circuit involving the periodontal proprioception, trigeminal mesencephalic nucleus (Vme), and trigeminal motor nucleus (Vmo). Anxiety is a common complication in patients with TMD. The lateral habenula (LHb) is involved in emotional modulation and has direct projections to the Vme. Therefore, the present research examined whether UAC facilitates excitatory input from the LHb to the Vme and, subsequently, anxiety-like behaviors in rats. The LHb activation was evaluated by the electrophysiological recording, assessment of vesicular glutamate transporter-2 (VGLUT2) mRNA expression, and measurement of anxiety-like behaviors. The effects of LHb activity on Vme were evaluated by electrophysiological recording from Vme neurons and local changes in VGLUT2 protein density. UAC produced anxiety in modeled rats and increased neuronal activity in the LHb. VGLUT2 mRNA expression was also increased in the LHb. Further, VGLUT2-positive boutons were observed in close apposite upon parvalbumin (PV)-labeled Vme neurons. VGLUT2 protein expression was also increased in the Vme. Significantly, injection of VGLUT2-targeted shRNA into the LHb reduced the expression of VGLUT2 protein in the Vme, attenuated UAC-associated anxiety-like behaviors, and attenuated electrophysiological changes in the Vme neurons. In conclusion, we show that UAC activates the LHb neurons as well as the periodontal proprioceptive pathway to provide excitatory input to the Vme and produce anxiety in rats. These findings provide a rationale for suppressing activity of the LHb to attenuate both the physical and psychological effects of TMD.
机译:咬合不良是颞下颌疾病(TMD)的重要危险因素,颞下颌疾病是一系列涉及颞下颌关节(TMJ)和颌骨肌肉的口面部功能障碍的疾病。我们最近显示,实验性单侧前交叉咬伤(UAC)通过涉及牙周本体感受,三叉神经中脑核(Vme)和三叉神经运动核(Vmo)的回路产生咬肌活动亢进。焦虑症是TMD患者的常见并发症。外侧唇(LHb)参与情绪调节,并直接投射到Vme。因此,本研究检查了UAC是否促进了从LHb到Vme的兴奋性输入,并随后促进了大鼠的焦虑样行为。 LHb激活通过电生理记录,评估囊泡谷氨酸转运蛋白2(VGLUT2)mRNA表达和评估焦虑样行为进行评估。通过从Vme神经元的电生理记录和VGLUT2蛋白密度的局部变化来评估LHb活性对Vme的影响。 UAC在模型大鼠中产生焦虑,并在LHb中增加神经元活性。在LHb中,VGLUT2 mRNA表达也增加。此外,在小白蛋白(PV)标记的Vme神经元上贴近地观察到VGLUT2阳性按钮。 VGLUT2中的VGLUT2蛋白表达也增加了。重要的是,向LHb注射靶向VGLUT2的shRNA降低了Vme中VGLUT2蛋白的表达,减弱了UAC相关的焦虑样行为,并减弱了Vme神经元的电生理变化。总之,我们表明UAC激活LHb神经元以及牙周本体感受途径,以向Vme提供兴奋性输入并在大鼠中产生焦虑。这些发现为抑制LHb减弱TMD的生理和心理影响提供了依据。

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