Nociceptor Neurons Facilitate Orthodontic Tooth Movement via Piezo2 in Mice.

S Wang, X Nie, G Parastooei, S Kumari, Y Abbasi, O Elnabawi, E-K Pae, C C Ko, M-K Chung
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Abstract

Multiple sensory afferents, including mechanosensitive and nociceptive nerves, are projected to the periodontium. Peptidergic afferents expressing transient receptor potential vanilloid 1 (TRPV1), a receptor for capsaicin, mediate pain caused by orthodontic forces. However, their role in orthodontic force-induced alveolar bone remodeling is poorly understood as is the contribution of mechanosensitive ion channels such as Piezo2 in nociceptive nerves. To investigate this role, we studied orthodontic tooth movement and alveolar bone remodeling using neural manipulations and genetic mouse models. Chemical ablation of TRPV1-expressing afferents localized to the trigeminal ganglia decreased orthodontic force-induced tooth movement and the number of osteoclasts in alveolar bone on the compression side. The extent of the force-induced increase in the ratio of receptor activator of nuclear factor kappa-B ligand/osteoprotegerin in the periodontium was modestly decreased in the chemical ablation group. Furthermore, chemogenetic silencing of TRPV1-lineage afferents reduced orthodontic tooth movement and the number of osteoclasts. Piezo2 was expressed in most periodontal afferents, and chemogenetic inhibition of Piezo2-expressing neurons decreased orthodontic tooth movement and the number of osteoclasts. In addition, the conditional knockout of Piezo2 in TRPV1-lineage afferents decreased orthodontic tooth movement and the number of osteoclasts. Overall, these results suggest that nociceptor neurons play critical roles in orthodontic force-induced alveolar bone remodeling and that the mechanical activation of neuronal Piezo2 in nociceptive nerves facilitates orthodontic tooth movement and associated alveolar bone remodeling.

损伤感受器神经元通过Piezo2促进小鼠正畸牙齿运动。
多种感觉传入神经,包括机械敏感神经和伤害神经,投射到牙周组织。肽能传入表达瞬时受体电位香草素1 (TRPV1),辣椒素受体,介导正畸力引起的疼痛。然而,它们在正畸力诱导的牙槽骨重塑中的作用尚不清楚,机械敏感离子通道(如Piezo2)在伤害神经中的作用也不清楚。为了研究这一作用,我们使用神经操纵和遗传小鼠模型研究了正畸牙齿的运动和牙槽骨的重塑。化学消融三叉神经节表达trpv1的传入神经可减少正畸力诱导的牙齿运动和受压侧牙槽骨中破骨细胞的数量。化学消融组牙周组织中核因子κ b配体受体激活物/骨保护素比值的力诱导升高程度略有降低。此外,trpv1谱系传入事件的化学发生沉默减少了正畸牙齿的运动和破骨细胞的数量。Piezo2在大多数牙周传入神经中表达,表达Piezo2的神经元的化学发生抑制减少了正畸牙齿的运动和破骨细胞的数量。此外,trpv1谱系传入神经中Piezo2的条件敲除可减少正畸牙齿的运动和破骨细胞的数量。总之,这些结果表明,伤害感受神经元在正畸力诱导的牙槽骨重塑中起着关键作用,并且伤害感受神经中神经元Piezo2的机械激活促进了正畸牙齿的运动和相关的牙槽骨重塑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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