首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Peripheral nerve injury-induced rearrangement of neural circuit in the spinal dorsal horn revealed by cross-correlation analysis
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Peripheral nerve injury-induced rearrangement of neural circuit in the spinal dorsal horn revealed by cross-correlation analysis

机译:周围神经损伤引起的跨关联分析显示脊髓背角中神经回路的重排

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Peripheral nerve injury often induces abnormal pain states, such as hyperalgesia and allodynia. In this study, we attempted to elucidate how neurons are synaptically integrated into the neuronal circuitry in the spinal dorsal horn and how synaptic connectivity patterns among dorsal horn neurons are altered by peripheral nerve injury. Experiments were performed on 6-8-week-old ICR mice. Partial sciatic nerve ligation was performed. Transverse slices of the lumbar spinal cord were prepared. Spike activities were simultaneously recorded from multiple neurons in the superficial dorsal horn (SDH) using a multi-electrode array system, and cross-correlograms between spike trains of neuron pairs were constructed. In sham-operated control mice, except for the flat cross-correlogram, the most common pattern was a cross-correlogram suggestive of common excitatory synaptic inputs to neuronal pairs. Peripheral nerve ligation increased the incidences of cross-correlograms suggestive of common excitatory synaptic inputs and excitatory synaptic connections, and decreased that of inhibitory synaptic connections. Additionally, bath-applied capsaicin, an agonist for transient receptor potential vanilloid 1 receptor, increased the frequency of action potentials. The effects of capsaicin stimulation on the incidence of cross-correlograms with various patterns were significantly different between sham-operated control and sciatic nerve-ligated mice. The present observations seem to indicate that neurons in the SDH form excitatory and/or inhibitory synapses with nearby neurons, and that synaptic connections among neurons in the SDH may remarkably change after the development of neuropathic pain.
机译:周围神经损伤通常会诱导异常的疼痛状态,例如痛觉过敏性和异常性。在这项研究中,我们试图阐明神经元如何将神经元突出地集成到脊椎背角中的神经元电路以及背角神经元之间的突触连接模式如何通过外周神经损伤改变。在6-8周龄ICR小鼠上进行实验。进行部分坐骨神经连接。制备横向切片腰椎脊髓。使用多电极阵列系统从浅色背角(SDH)中的多个神经元同时记录尖峰活动,构建神经元对的尖峰列车之间的交叉相关图。在假手术控制小鼠中,除了平坦的互连图外,最常见的模式是伴随着神经元对的常见兴奋性突触输入的交叉相关图。周围神经连接增加了交叉相关性的癌症暗示伴随常见的兴奋性突触输入和兴奋性突触连接,并降低了抑制突触连接的兴奋性。另外,浴涂的辣椒素,瞬态受体潜在的香草1受体的激动剂增加了动作电位的频率。辣椒素刺激对具有各种模式的交叉相关性发生率的影响在假手术控制和坐骨神经连接的小鼠之间显着差异。本观察似乎表明SDH中的神经元在附近神经元形成兴奋性和/或抑制突触,并且SDH中神经元中的突触连接可能在发育神经性疼痛的发展后显着改变。

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