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An ultrafast system for signaling mechanical pain in human skin

机译:超快系统,可发出人体皮肤机械疼痛的信号

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The canonical view is that touch is signaled by fast-conducting, thickly myelinated afferents, whereas pain is signaled by slow-conducting, thinly myelinated (“fast” pain) or unmyelinated (“slow” pain) afferents. While other mammals have thickly myelinated afferents signaling pain (ultrafast nociceptors), these have not been demonstrated in humans. Here, we performed single-unit axonal recordings (microneurography) from cutaneous mechanoreceptive afferents in healthy participants. We identified A-fiber high-threshold mechanoreceptors (A-HTMRs) that were insensitive to gentle touch, encoded noxious skin indentations, and displayed conduction velocities similar to A-fiber low-threshold mechanoreceptors. Intraneural electrical stimulation of single ultrafast A-HTMRs evoked painful percepts. Testing in patients with selective deafferentation revealed impaired pain judgments to graded mechanical stimuli only when thickly myelinated fibers were absent. This function was preserved in patients with a loss-of-function mutation in mechanotransduction channel PIEZO2. These findings demonstrate that human mechanical pain does not require PIEZO2 and can be signaled by fast-conducting, thickly myelinated afferents.
机译:典型的观点是,触摸是由传导较快的厚髓鞘传入神经发出的,而疼痛则是由传导较慢的稀有髓鞘(“较快”的疼痛)或非髓鞘的(“缓慢”的疼痛)传入的信号发出的。尽管其他哺乳动物的髓鞘传入神经传递了疼痛信号(超快伤害感受器),但尚未在人类中得到证实。在这里,我们对健康参与者的皮肤机械感受传入进行了单轴突轴记录(微神经造影)。我们确定了A纤维高阈值机械感受器(A-HTMRs)对轻柔的触摸不敏感,编码有害的皮肤凹痕并显示出与A纤维低阈值机械感受器相似的传导速度。单个超快A-HTMR的神经内电刺激引起痛苦的感觉。对选择性脱除咖啡因的患者进行的测试表明,仅当缺少粗髓鞘纤维时,对分级机械刺激的疼痛判断才会受损。机械转导通道PIEZO2的功能丧失突变的患者可以保留该功能。这些发现表明,人的机械性疼痛不需要PIEZO2,可以通过快速传导的,有髓鞘的传入神经来发出信号。

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