Department of Neurobiology, Physiology and Behavior, University of California, Davis, Davis, United States.
Department of Neuroscience, Johns Hopkins University, Baltimore, United States.
Elife. 2022 Aug 16;11:e69626. doi: 10.7554/eLife.69626.
The rostral ventromedial medulla (RVM) is important in descending modulation of spinal nociceptive transmission, but it is unclear if the RVM also modulates spinal pruriceptive transmission. RVM ON cells are activated by noxious algesic and pruritic stimuli and are pronociceptive. Many RVM-spinal projection neurons express the neurokinin-1 receptor (Tacr1), and ON-cells are excited by local administration of substance P (SP). We hypothesized that Tacr1-expressing RVM ON cells exert an inhibitory effect on itch opposite to their pronociceptive action. Intramedullary microinjection of SP significantly potentiated RVM ON cells and reduced pruritogen-evoked scratching while producing mild mechanical sensitization. Chemogenetic activation of RVM Tacr1-expressing RVM neurons also reduced acute pruritogen-evoked scratching. Optotagging experiments confirmed RVM Tacr1-expressing neurons to be ON cells. We conclude that Tacr1-expressing ON cells in RVM play a significant role in the modulation of pruriceptive transmission.
中缝腹侧导水管周围灰质(RVM)在脊髓伤害性传递的下行调制中起重要作用,但尚不清楚 RVM 是否也调节脊髓瘙痒性传递。RVM 兴奋细胞被伤害性和瘙痒性刺激激活,具有促伤害作用。许多 RVM-脊髓投射神经元表达神经激肽-1 受体(Tacr1),而局部给予 P 物质(SP)可兴奋兴奋细胞。我们假设表达 Tacr1 的 RVM 兴奋细胞对瘙痒具有抑制作用,与它们的促伤害作用相反。鞘内注射 SP 可显著增强 RVM 兴奋细胞,并减少致痒原诱发的搔抓,同时产生轻度机械敏化。化学遗传激活 RVM 表达 Tacr1 的神经元也减少急性致痒原诱发的搔抓。光标记实验证实 RVM 表达 Tacr1 的神经元为兴奋细胞。我们的结论是,RVM 中表达 Tacr1 的兴奋细胞在瘙痒性传递的调制中起重要作用。