神经病理性疼痛
神经科学
痛觉超敏
化学
星形胶质细胞
补品(生理学)
神经元
运动前神经元活动
医学
痛觉过敏
内科学
生物
中枢神经系统
伤害
受体
作者
Yeon Ha Ju,Jongwook Cho,Jiyoung Park,Hyun‐Jin Kim,Eun‐Bin Hong,C. Justin Lee,Euiheon Chung,Hyoung-Ihl Kim,Min‐Ho Nam
标识
DOI:10.1038/s12276-024-01232-z
摘要
Abstract Neuropathic pain is a debilitating condition caused by the hyperexcitability of spinal dorsal horn neurons and is often characterized by allodynia. Although neuron-independent mechanisms of hyperexcitability have been investigated, the contribution of astrocyte-neuron interactions remains unclear. Here, we show evidence of reactive astrocytes and their excessive GABA release in the spinal dorsal horn, which paradoxically leads to the tonic excitation of neighboring neurons in a neuropathic pain model. Using multiple electrophysiological methods, we demonstrated that neuronal hyperexcitability is attributed to both increased astrocytic GABA synthesis via monoamine oxidase B (MAOB) and the depolarized reversal potential of GABA-mediated currents (E GABA ) via the downregulation of the neuronal K + /Cl − cotransporter KCC2. Furthermore, longitudinal 2-deoxy-2-[ 18 F]-fluoro-D-glucose microPET imaging demonstrated increased regional glucose metabolism in the ipsilateral dorsal horn, reflecting neuronal hyperexcitability. Importantly, inhibiting MAOB restored the entire astrocytic GABA-mediated cascade and abrogated the increased glucose metabolism and mechanical allodynia. Overall, astrocytic GABA-mediated tonic excitation is critical for neuronal hyperexcitability, leading to mechanical allodynia and neuropathic pain.
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