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首页> 外文期刊>Cell Reports >Dorsal Horn Parvalbumin Neurons Are Gate-Keepers of Touch-Evoked Pain after Nerve Injury
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Dorsal Horn Parvalbumin Neurons Are Gate-Keepers of Touch-Evoked Pain after Nerve Injury

机译:背角小白蛋白神经元是神经损伤后触动性疼痛的守门人

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摘要

Neuropathic pain is a chronic debilitating disease that results from nerve damage, persists long after the injury has subsided, and is characterized by spontaneous pain and mechanical hypersensitivity. Although loss of inhibitory tone in the dorsal horn of the spinal cord is a major contributor to neuropathic pain, the molecular and cellular mechanisms underlying this disinhibition are unclear. Here, we combined pharmacogenetic activation and selective ablation approaches in mice to define the contribution of spinal cord parvalbumin (PV)-expressing inhibitory interneurons in naive and neuropathic pain conditions. Ablating PV neurons in naive mice produce neuropathic pain-like mechanical allodynia via disinhibition of PKC@c excitatory interneurons. Conversely, activating PV neurons in nerve-injured mice alleviates mechanical hypersensitivity. These findings indicate that PV interneurons are modality-specific filters that gate mechanical but not thermal inputs to the dorsal horn and that increasing PV interneuron activity can ameliorate the mechanical hypersensitivity that develops following nerve injury.
机译:神经性疼痛是由神经损伤引起的慢性衰弱性疾病,在损伤消退后持续很长时间,其特征是自发性疼痛和机械性超敏反应。尽管脊髓背角抑制性音调的丧失是神经性疼痛的主要因素,但尚不清楚这种抑制作用的分子和细胞机制。在这里,我们结合了小鼠的药物遗传激活和选择性消融方法,以定义在幼稚和神经性疼痛情况下表达脊髓小白蛋白(PV)的抑制性中间神经元的作用。通过抑制PKC @ c兴奋性中间神经元,在幼稚小鼠中消融PV神经元会产生神经性疼痛样机械异常性疼痛。相反,激活神经损伤小鼠的PV神经元可减轻机械性超敏反应。这些发现表明,PV中间神经元是特定于形态的过滤器,可以控制机械输入而不是背角的热输入,并且增加的PV中间神经元的活动可以减轻神经损伤后发生的机械性超敏反应。

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