Department of Biomedical, Metabolic and Neural Science, University of Modena and Reggio Emilia, 41100 Modena, Italy.
Department of Anesthesiology, Perioperative and Pain Medicine, Department of Molecular and Cellular Physiology, Stanford Neurosciences Institute, Stanford University, Palo Alto, CA 94304, USA.
Neuron. 2014 Mar 19;81(6):1312-1327. doi: 10.1016/j.neuron.2014.01.044. Epub 2014 Feb 27.
Cutaneous mechanosensory neurons detect mechanical stimuli that generate touch and pain sensation. Although opioids are generally associated only with the control of pain, here we report that the opioid system in fact broadly regulates cutaneous mechanosensation, including touch. This function is predominantly subserved by the delta opioid receptor (DOR), which is expressed by myelinated mechanoreceptors that form Meissner corpuscles, Merkel cell-neurite complexes, and circumferential hair follicle endings. These afferents also include a small population of CGRP-expressing myelinated nociceptors that we now identify as the somatosensory neurons that coexpress mu and delta opioid receptors. We further demonstrate that DOR activation at the central terminals of myelinated mechanoreceptors depresses synaptic input to the spinal dorsal horn, via the inhibition of voltage-gated calcium channels. Collectively our results uncover a molecular mechanism by which opioids modulate cutaneous mechanosensation and provide a rationale for targeting DOR to alleviate injury-induced mechanical hypersensitivity.
皮肤机械感觉神经元检测产生触觉和痛觉的机械刺激。尽管阿片类药物通常仅与疼痛控制相关,但我们在这里报告称,阿片系统实际上广泛调节皮肤机械感觉,包括触觉。这种功能主要由 delta 阿片受体(DOR)介导,该受体由形成 Meissner 小体、Merkel 细胞-轴突复合体和环形毛囊末端的有髓机械感受器表达。这些传入神经还包括一小部分表达 CGRP 的有髓伤害感受器,我们现在将其鉴定为共同表达 mu 和 delta 阿片受体的躯体感觉神经元。我们进一步证明,有髓机械感受器的中枢末端的 DOR 激活通过抑制电压门控钙通道来抑制脊髓背角的突触输入。总的来说,我们的结果揭示了阿片类药物调节皮肤机械感觉的分子机制,并为靶向 DOR 以减轻损伤引起的机械性超敏提供了理论依据。