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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Role of TRPM8 Channels in Altered Cold Sensitivity of Corneal Primary Sensory Neurons Induced by Axonal Damage
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Role of TRPM8 Channels in Altered Cold Sensitivity of Corneal Primary Sensory Neurons Induced by Axonal Damage

机译:TRPM8通道在轴突损伤诱导的角膜原发性感觉神经元改变的变化中的作用

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摘要

The cornea is extensively innervated by trigeminal ganglion cold thermoreceptor neurons expressing TRPM8 (transient receptor potential cation channel subfamily M member 8). These neurons respond to cooling, hyperosmolarity and wetness of the corneal surface. Surgical injury of corneal nerve fibers alters tear production and often causes dry eye sensation. The contribution of TRPM8-expressing corneal cold-sensitive neurons (CCSNs) to these symptoms is unclear. Using extracellular recording of CCSNs nerve terminals combined with in vivo confocal tracking of reinnervation, Ca imaging and patch-clamp recordings of fluorescent retrogradely labeled corneal neurons in culture, we analyzed the functional modifications of CCSNs induced by peripheral axonal damage in male mice. After injury, the percentage of CCSNs, the cold- and menthol-evoked intracellular [Ca2+] rises and the TRPM8 current density in CCSNs were larger than in sham animals, with no differences in the brake K current /KD. Active and passive membrane properties of CCSNs from both groups were alike and corresponded mainly to those of canonical low- and high-threshold cold thermoreceptor neurons. Ongoing firing activity and menthol sensitivity were higher in CCSN terminals of injured mice, an observation accounted for by mathematical modeling. These functional changes developed in parallel with a partial reinnervation of the cornea by TRPM8(+) fibers and with an increase in basal tearing in injured animals compared with sham mice. Our results unveil key TRPM8-dependent functional changes in CCSNs in response to injury, suggesting that increased tearing rate and ocular dryness sensation derived from deep surgical ablation of corneal nerves are due to enhanced functional expression of TRPM8 channels in these injured trigeminal primary sensory neurons.
机译:Cornea通过表达TRPM8的三叉神经神经神经节冷热感受器神经元广泛地解剖(瞬态受体电位阳离子通道亚家族MEMERS 8)。这些神经元对角膜表面的冷却,高摩托度和湿润。角膜神经纤维的手术损伤改变了泪水,往往会导致干燥的眼睛感觉。 TRPM8表达的角膜敏感神经元(CCSNS)对这些症状的贡献尚不清楚。使用CCSNS神经终端的细胞外记录与Reinnervation的Vivo共焦跟踪相结合,Ca成像和荧光逆行标记的角膜神经元在培养中的CA成像和补丁钳录制,我们分析了雄性小鼠外围轴突损伤诱导的CCSN的功能改性。损伤后,CCSNs的百分比,冷和薄荷醇诱发的细胞内的[Ca 2+]上升,在CCSNs所述TRPM8的电流密度比在深水动物时,与在制动ķ电流/ KD没有差异。来自两个组的CCSN的活性和被动膜特性是相似的,主要对应于规范低和高阈值冷热热感受器神经元的那些。受伤小鼠的CCSN末端的持续射击活动和薄荷醇敏感性较高,该观察由数学建模占。这些功能变化与TRPM8(+)纤维的角膜的部分重新变化,并与假小鼠相比,受伤动物的基础撕裂增加。我们的结果揭示了CCSNS的关键TRPM8依赖性功能变化,响应于损伤,提高了因角膜神经深层外科烧蚀而增加的撕裂率和眼睛干燥感应是由于这些受伤的三叉初级感官神经元中的TRPM8通道的功能表达增强。

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