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首页> 外文期刊>Journal of Dental Research: Official Publication of the International Association for Dental Research >TRPM8 Mediates Hyperosmotic Stimuli-Induced Nociception in Dental Afferents
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TRPM8 Mediates Hyperosmotic Stimuli-Induced Nociception in Dental Afferents

机译:TRPM8介导高血糖刺激诱导的牙科传入中的伤害症

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Hyperosmolar sweet foods onto exposed tooth dentin evoke sudden and intense dental pain, called dentin hypersensitivity. However, it remains unclear how hyperosmolar stimuli excite dental primary afferent (DPA) neurons and thereby lead to dentin hypersensitivity. This study elucidated whether TRPM8, which is well known as a cold temperature- or menthol-activated receptor, additionally mediates nociception in response to hyperosmolar stimuli in adult mouse DPA neurons, which are identified by a fluorescent retrograde tracer: Dil. Single-cell reverse transcription polymerase chain reaction revealed that TRPM8 was expressed in subsets of DPA neurons and that TRPM8 was highly colocalized with TRPVI and Piezo2. Immunohistochemical analysis also confirmed TRPM8 expression in DPA neurons. By using Fura-2-based calcium imaging, application of hyperosmolar sucrose solutions elicited calcium transients in subsets of the trigeminal ganglion neurons, which was significantly abolished by a selective TRPM8 antagonist: N-(3-Aminopropyl)-2-[(3-methylphenyl) methoxy]-N-(2-thienylmethyl)benzamide (AMTB) hydrochloride. When we further examined changes of c-fos expression (a neuronal activation marker) in the spinal trigeminal nucleus after hyperosmolar stimulation onto exposed tooth dentin, c-fos mRNA and protein expression were increased and were also significantly reduced by AMTB, especially in the spinal trigeminal interpolaris-caudalis transition zone (Vi/Vc). Taken together, our results provide strong evidence that TRPM8 expressed in DPA neurons might mediate dental pain as a hyperosmosensor in adult mice.
机译:Hyperosmolar甜食在暴露的牙齿牙本质中引起突然和强烈的牙齿疼痛,称为牙本质过敏。然而,仍然不清楚HyperoRAR刺激激发牙科初级传入(DPA)神经元,从而导致牙本质过敏。该研究阐明了众所周知的TRPM8,其是寒冷的温度或薄荷醇激活的受体,另外鉴于成年小鼠DPA神经元中的高硅咯醇刺激介导伤害效果,其通过荧光逆行示踪器:DIL鉴定。单细胞逆转录聚合酶链反应显示,TRPM8在DPA神经元的亚群中表达,并且TRPM8高度分致TRPVI和压电2。免疫组织化学分析还证实了DPA神经元中的TRPM8表达。通过使用基于Fura-2的钙成像,在三叉神经节神经元的子集中引发钙瞬变的应用,这被选择性TrpM8拮抗剂显着废除:N-(3-氨基丙基)-2 - [(3-甲基苯基)甲氧基] -N-(2-噻吩基甲基)苯甲酰甲酰胺(AMTB)盐酸盐。当我们进一步检查脊髓三叉细胞核中的C-FOS表达(神经元激活标记)的变化,在过度摩尔刺激到暴露的牙齿牙本质中,C-FOS mRNA和蛋白质表达增加,并且通过AMTB显着降低,特别是在脊柱中三叉颞滴度 - 尾部过渡区(VI / VC)。我们的结果一起提供了强有力的证据,即DPA神经元表达的TRPM8可能将牙科疼痛介导成年小​​鼠的血管传感器。

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