首页> 外文期刊>Scientific reports. >Membrane potential synchrony of neurons in anterior cingulate cortex plays a pivotal role in generation of neuropathic pain
【24h】

Membrane potential synchrony of neurons in anterior cingulate cortex plays a pivotal role in generation of neuropathic pain

机译:膜潜在的神经元在前刺皮层中的膜潜在同步发挥着神经病疼痛的枢转作用

获取原文
           

摘要

The pathophysiology of neuropathic pain generation has not been fully investigated. Previous studies have primarily focused on changes in the properties of single neurons in the brain after nerve injury; however, little is known concerning the role of neuron-to-neuron connections in neuropathic pain pathogenesis. Synaptic transmission potentiation in anterior cingulate cortex (ACC) has been confirmed to be responsible for the formation of neuropathic pain. Thus, analysis of interneuronal connections in the ACC is an important approach for understanding the mechanism of neuropathic pain since it provides information on the potency of synaptic transmission. Here, we recorded membrane potentials from pairs of ACC neurons in anaesthetised rats and found that cross-correlations between pairs of ACC neurons significantly increased after surgery for chronic constriction injury (CCI). Moreover, CCI surgery could also enhance the power spectrum density of lower and higher-frequency membrane oscillations while having no effect on middle-frequency oscillations. The activation of membrane potential synchrony and power spectrum was reversed by the electrical synapse blocker mefloquine and pain behaviour was simultaneously alleviated. Our results may indicate that activation of membrane potential synchrony contributes to generation of neuropathic pain.
机译:没有完全调查神经性疼痛生成的病理生理学。以前的研究主要专注于神经损伤后脑中单个神经元的性质的变化;然而,关于神经元到神经元联系在神经性疼痛发病机制中的作用毫无熟知。已经证实,突触传递促进前刺刺刺型皮质(ACC)负责形成神经性疼痛。因此,ACC中的界形连接分析是理解神经病疼痛机制的重要方法,因为它提供了关于突触传播效力的信息。这里,我们在麻醉大鼠对Acc神经元对中记录了膜电位,发现在慢性收缩损伤(CCI)的手术后ACC神经元对之间显着增加。此外,CCI手术还可以增强较低频率膜振荡的功率谱密度,同时对中频振荡没有影响。通过电气康复阻断液和疼痛行为同时缓解膜势同步和功率谱的激活。我们的结果可能表明,膜潜在同步的激活有助于产生神经性疼痛。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号