The anatomy, neurophysiology, and cellular mechanisms of intradental sensation

Elizabeth A. Ronan, Maximilian Nagel, J.J. Emrick
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Abstract

Somatosensory innervation of the oral cavity enables the detection of a range of environmental stimuli including minute and noxious mechanical forces. The trigeminal sensory neurons underlie sensation originating from the tooth. Prior work has provided important physiological and molecular characterization of dental pulp sensory innervation. Clinical dental experiences have informed our conception of the consequence of activating these neurons. However, the biological role of sensory innervation within the tooth is yet to be defined. Recent transcriptomic data, combined with mouse genetic tools, have the capacity to provide important cell-type resolution for the physiological and behavioral function of pulp-innervating sensory neurons. Importantly, these tools can be applied to determine the neuronal origin of acute dental pain that coincides with tooth damage as well as pain stemming from tissue inflammation (i.e., pulpitis) toward developing treatment strategies aimed at relieving these distinct forms of pain.
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牙内感觉的解剖学、神经生理学和细胞机制
口腔的躯体感觉神经支配能够检测到一系列环境刺激,包括微小和有害的机械力。三叉神经感觉神经元是源自牙齿的感觉的基础。先前的工作为牙髓感觉神经支配提供了重要的生理和分子特征。临床牙科经验告诉我们激活这些神经元的后果。然而,牙髓感觉神经支配的生物学作用仍有待确定。最新的转录组数据与小鼠遗传工具相结合,能够为牙髓神经支配感觉神经元的生理和行为功能提供重要的细胞类型分辨率。重要的是,这些工具可用于确定与牙齿损伤同时发生的急性牙痛以及组织炎症(即牙髓炎)引起的疼痛的神经元起源,从而制定旨在缓解这些不同形式疼痛的治疗策略。
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