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首页> 外文期刊>The journal of clinical investigation >A feed-forward spinal cord glycinergic neural circuit gates mechanical allodynia
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A feed-forward spinal cord glycinergic neural circuit gates mechanical allodynia

机译:前馈脊髓甘氨酸能神经回路控制机械性异常性疼痛

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Neuropathic pain is characterized by mechanical allodynia induced by low-threshold myelinated Aβ-fiber activation. The original gate theory of pain proposes that inhibitory interneurons in the lamina II of the spinal dorsal horn (DH) act as “gate control” units for preventing the interaction between innocuous and nociceptive signals. However, our understanding of the neuronal circuits underlying pain signaling and modulation in the spinal DH is incomplete. Using a rat model, we have shown that the convergence of glycinergic inhibitory and excitatory Aβ-fiber inputs onto PKCγ~(+) neurons in the superficial DH forms a feed-forward inhibitory circuit that prevents Aβ input from activating the nociceptive pathway. This feed-forward inhibition was suppressed following peripheral nerve injury or glycine blockage, leading to inappropriate induction of action potential outputs in the nociceptive pathway by Aβ-fiber stimulation. Furthermore, spinal blockage of glycinergic synaptic transmission in vivo induced marked mechanical allodynia. Our findings identify a glycinergic feed-forward inhibitory circuit that functions as a gate control to separate the innocuous mechanoreceptive pathway and the nociceptive pathway in the spinal DH. Disruption of this glycinergic inhibitory circuit after peripheral nerve injury has the potential to elicit mechanical allodynia, a cardinal symptom of neuropathic pain.
机译:神经性疼痛的特征在于低阈值的髓鞘Aβ纤维活化引起的机械性异常性疼痛。最初的疼痛门理论提出,脊髓背角(DH)板层II中的抑制性神经元充当“门控制”单元,以防止无害和伤害性信号之间的相互作用。但是,我们对脊髓DH中疼痛信号传导和调节的神经回路的了解还不完整。使用大鼠模型,我们已经表明,甘氨酸抑制性和兴奋性Aβ纤维输入汇聚到浅表DH的PKCγ〜(+)神经元上会形成前馈抑制电路,从而阻止Aβ输入激活激活伤害性途径。在周围神经损伤或甘氨酸阻塞后,这种前馈抑制被抑制,导致通过Aβ纤维刺激在伤害感受途径中不适当地诱导动作电位输出。此外,体内的甘氨酸能突触传递的脊髓阻塞引起明显的机械性异常性疼痛。我们的发现确定了甘氨酸能前馈抑制回路,其起着门控制的作用,以分离脊髓DH中无害的机械感受性通路和伤害性通路。周围神经损伤后这种甘氨酸抑制回路的破坏有可能引起机械性异常性疼痛,这是神经性疼痛的主要症状。

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