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神经损伤后室旁核前核神经元兴奋性和突触平衡的可塑性。

Plasticity of neuronal excitability and synaptic balance in the anterior nucleus of paraventricular thalamus after nerve injury.

机构信息

Department of rehabilitation medicine, Jiangsu Shengze Hospital Affilated to Nanjing Medical University, Suzhou, Jiangsu, PR China.

Institute of Pain Medicine and Special Environmental Medicine, Nantong University, Nantong, Jiangsu, PR China.

出版信息

Brain Res Bull. 2022 Oct 1;188:1-10. doi: 10.1016/j.brainresbull.2022.07.008. Epub 2022 Jul 16.

Abstract

The anterior nucleus of the paraventricular thalamus (aPVT) integrates various synaptic inputs and conveys information to the downstream brain regions for arousal and pain regulation. Recent studies have indicated that the PVT plays a crucial role in the regulation of chronic pain, but the plasticity mechanism of neuronal excitability and synaptic inputs for aPVT neurons in neuropathic pain remains unclear. Here, we report that spinal nerve ligation (SNL) significantly increased the neuronal excitability and reset the excitatory/inhibitory (E/I) synaptic inputs ratio of aPVT neurons in mice. SNL significantly increased the membrane input resistance, firing frequency, and the half-width of action potential. Additionally, SNL enlarged the area of afterdepolarization and prolonged the rebound low-threshold spike following a hyperpolarized current injection. Further results indicate that an inwardly rectifying current density was decreased in SNL animals. SNL also decreased the amplitude, but not the frequency of spontaneous excitatory postsynaptic currents (sEPSCs), nor the amplitude or frequency of spontaneous inhibitory postsynaptic currents (sIPSCs) of aPVT neurons. Moreover, SNL disrupted the E/I synaptic ratio, caused a decrease in weighted tau and half-width of averaged sIPSCs, but did not change these physiological properties of averaged sEPSCs. Finally, pharmacological activation of the GABA receptor at aPVT could effective relieve SNL-induced mechanical allodynia in mice. These results reveal the plasticity of intrinsic neuronal excitability and E/I synaptic balance in the aPVT neurons after nerve injury and it may play an important role in the development of pain sensitization.

摘要

室旁丘脑前核(aPVT)整合了各种突触输入,并将信息传递到下游脑区,以调节觉醒和疼痛。最近的研究表明,PVT 在调节慢性疼痛中起着至关重要的作用,但神经病理性疼痛中 aPVT 神经元的神经元兴奋性和突触输入的可塑性机制尚不清楚。在这里,我们报告脊髓神经结扎(SNL)显著增加了小鼠 aPVT 神经元的神经元兴奋性,并重置了兴奋性/抑制性(E/I)突触输入的比率。SNL 显著增加了膜输入电阻、放电频率和动作电位的半宽度。此外,SNL 扩大了后去极化的面积,并延长了超极化电流注入后的反弹低阈值 spikes。进一步的结果表明,内向整流电流密度在 SNL 动物中减少。SNL 还降低了 aPVT 神经元的自发兴奋性突触后电流(sEPSCs)的幅度,但不改变其频率,也不改变自发抑制性突触后电流(sIPSCs)的幅度或频率。此外,SNL 破坏了 E/I 突触比率,导致加权 tau 和平均 sIPSCs 的半宽度减小,但不改变平均 sEPSCs 的这些生理特性。最后,在 aPVT 中激活 GABA 受体可有效缓解 SNL 诱导的小鼠机械性痛觉过敏。这些结果揭示了神经损伤后 aPVT 神经元内在神经元兴奋性和 E/I 突触平衡的可塑性,它可能在痛觉过敏的发展中起重要作用。

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