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Pain Inhibits GRPR Neurons via GABAergic Signaling in the Spinal Cord

机译:疼痛通过脊髓中的胃肠杆菌信号传导抑制GRPR神经元

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It has been known that algogens and cooling could inhibit itch sensation; however, the underlying molecular and neural mechanisms remain poorly understood. Here, we show that the spinal neurons expressing gastrin releasing peptide receptor (GRPR) primarily comprise excitatory interneurons that receive direct and indirect inputs from C and Aδ fibers and form contacts with projection neurons expressing the neurokinin 1 receptor (NK1R). Importantly, we show that noxious or cooling agents inhibit the activity of GRPR neurons via GABAergic signaling. By contrast, capsaicin, which evokes a mix of itch and pain sensations, enhances both excitatory and inhibitory spontaneous synaptic transmission onto GRPR neurons. These data strengthen the role of GRPR neurons as a key circuit for itch transmission and illustrate a spinal mechanism whereby pain inhibits itch by suppressing the function of GRPR neurons.
机译:已知血糖和冷却可以抑制瘙痒感;然而,潜在的分子和神经机制仍然明白。在这里,我们表明,表达胃泌素释放肽受体(GRPR)的脊髓神经元主要包括从C和Aδ纤维接收直接和间接输入的兴奋性间核,并与表达神经蛋白1受体(NK1R)的突出神经元形成触点。重要的是,我们表明有毒或冷却剂抑制了通过胃肠杆菌信号传导的GRPR神经元的活性。相比之下,胶囊诱发瘙痒和疼痛感应的混合物,增强了兴奋性和抑制自发的自发突触传递到GRPR神经元。这些数据加强了GRPR神经元作为瘙痒传输的关键电路的作用,并且通过抑制GRPR神经元的功能,疼痛抑制瘙痒的脊柱机制。

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