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Electrophysiological property and chemical sensitivity of primary afferent neurons that innervate rat whisker hair follicles

机译:刺激大鼠晶须毛囊的初级传入神经元的电生理特性和化学敏感性

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摘要

Whisker hair follicles are sensory organs that sense touch and perform tactile discrimination in animals, and they are sites where sensory impulses are initiated when whisker hairs touch an object. The sensory signals are then conveyed by whisker afferent fibers to the brain for sensory perception. Electrophysiological property and chemical sensitivity of whisker afferent fibers, important factors affecting whisker sensory processing, are largely not known. In the present study, we performed patch-clamp recordings from pre-identified whisker afferent neurons in whole-mount trigeminal ganglion preparations and characterized their electrophysiological property and sensitivity to ATP, serotonin and glutamate. Of 97 whisker afferent neurons examined, 67% of them are found to be large-sized (diameter ≥45 µm) cells and 33% of them are medium- to small-sized (diameter <45 µm) cells. Almost every large-sized whisker afferent neuron fires a single action potential but many (40%) small/medium-sized whisker afferent neurons fire multiple action potentials in response to prolonged stepwise depolarization. Other electrophysiological properties including resting membrane potential, action potential threshold, and membrane input resistance are also significantly different between large-sized and small/medium-sized whisker afferent neurons. Most large-sized and many small/medium-sized whisker afferent neurons are sensitive to ATP and/or serotonin, and ATP and/or serotonin could evoke strong inward currents in these cells. In contrast, few whisker afferent neurons are sensitive to glutamate. Our results raise a possibility that ATP and/or serotonin may be chemical messengers involving sensory signaling for different types of rat whisker afferent fibers.
机译:晶须毛囊是感觉器官,它们在动物中感觉触觉并进行触觉辨别,它们是晶须毛接触物体时会产生感觉冲动的部位。感觉信号然后通过晶须传入纤维传送到大脑以进行感觉感知。晶须传入纤维的电生理特性和化学敏感性是影响晶须感官加工的重要因素,目前尚不清楚。在本研究中,我们在整个三叉神经节制剂中从预先确定的晶须传入神经元进行了膜片钳记录,并表征了它们的电生理特性以及对ATP,5-羟色胺和谷氨酸的敏感性。在检查的97个晶须传入神经元中,有67%被发现是大型(直径≥45μm)细胞,而其中33%是中小型(直径<45μm)细胞。几乎每个大型晶须传入神经元都会激发单个动作电位,但是许多(40%)小/中型晶须传入神经元会响应长时间的逐步去极化而激发多个动作电位。大型和小型/中型晶须传入神经元之间的其他电生理学特性(包括静息膜电位,动作电位阈值和膜输入电阻)也显着不同。大多数大型和许多小/中型晶须传入神经元对ATP和/或5-羟色胺敏感,而ATP和/或5-羟色胺可在这些细胞中引起强烈的内向电流。相反,几乎没有晶须传入神经元对谷氨酸敏感。我们的结果提出了一种可能性,即ATP和/或5-羟色胺可能是涉及不同类型的大鼠晶须传入纤维感觉信号的化学信使。

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