Presynaptic Enhancement of Transmission from Nociceptors Expressing Nav1.8 onto Lamina-I Spinothalamic Tract Neurons by Spared Nerve Injury in Mice.

IF 2.7 3区 医学 Q3 NEUROSCIENCES eNeuro Pub Date : 2024-09-10 Print Date: 2024-09-01 DOI:10.1523/ENEURO.0087-24.2024
Wei-Chen Hung 洪瑋辰, Chih-Cheng Chen 陳志成, Cheng-Tung Yen 嚴震東, Ming-Yuan Min 閔明源
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Abstract

Alteration of synaptic function in the dorsal horn (DH) has been implicated as a cellular substrate for the development of neuropathic pain, but certain details remain unclear. In particular, the lack of information on the types of synapses that undergo functional changes hinders the understanding of disease pathogenesis from a synaptic plasticity perspective. Here, we addressed this issue by using optogenetic and retrograde tracing ex vivo to selectively stimulate first-order nociceptors expressing Nav1.8 (NRsNav1.8) and record the responses of spinothalamic tract neurons in spinal lamina I (L1-STTNs). We found that spared nerve injury (SNI) increased excitatory postsynaptic currents (EPSCs) in L1-STTNs evoked by photostimulation of NRsNav1.8 (referred to as Nav1.8-STTN EPSCs). This effect was accompanied by a significant change in the failure rate and paired-pulse ratio of synaptic transmission from NRsNav1.8 to L1-STTN and in the frequency (not amplitude) of spontaneous EPSCs recorded in L1-STTNs. However, no change was observed in the ratio of AMPA to NMDA receptor-mediated components of Nav1.8-STTN EPSCs or in the amplitude of unitary EPSCs constituting Nav1.8-STTN EPSCs recorded with extracellular Ca2+ replaced by Sr2+ In addition, there was a small increase (approximately 10%) in the number of L1-STTNs showing immunoreactivity for phosphorylated extracellular signal-regulated kinases in mice after SNI compared with sham. Similarly, only a small percentage of L1-STTNs showed a lower action potential threshold after SNI. In conclusion, our results show that SNI induces presynaptic modulation at NRNav1.8 (consisting of both peptidergic and nonpeptidergic nociceptors) synapses on L1-STTNs forming the lateral spinothalamic tract.

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幸免神经损伤对小鼠表达 Nav1.8 的痛觉感受器向脊髓脊束神经元传导的突触前增强作用
背角(DH)突触功能的改变已被认为是神经病理性疼痛发生的细胞基础,但某些细节仍不清楚。尤其是缺乏有关发生功能变化的突触类型的信息,这阻碍了从突触可塑性的角度对疾病发病机制的理解。为了解决这个问题,我们在体外使用光遗传学和逆行追踪技术选择性地刺激表达 Nav1.8 的一阶神经感受器(NRsNav1.8),并记录脊髓第一层脊髓束神经元(L1-STTNs)的反应。我们发现,幸免神经损伤(SNI)会增加 NRsNav1.8 光刺激诱发的 L1-STTN 兴奋性突触后电流(EPSC)(称为 Nav1.8-STTN EPSC)。伴随这种效应的是,从 NRsNav1.8 到 L1-STTN 的突触传递的失败率和配对脉冲比率以及在 L1-STTN 中记录到的自发 EPSC 的频率(而不是振幅)发生了显著变化。此外,与假小鼠相比,SNI 后出现磷酸化细胞外信号调节激酶免疫反应的 L1-STTN 数量有小幅增加(约 10%)。同样,只有一小部分 L1-STTN 在 SNI 后显示出较低的动作电位阈值。总之,我们的研究结果表明,SNI 会诱导 NRNav1.8(由肽能和非肽能痛觉感受器组成)突触前调节形成外侧脊髓束的 L1-STTNs 突触。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
eNeuro
eNeuro Neuroscience-General Neuroscience
CiteScore
5.00
自引率
2.90%
发文量
486
审稿时长
16 weeks
期刊介绍: An open-access journal from the Society for Neuroscience, eNeuro publishes high-quality, broad-based, peer-reviewed research focused solely on the field of neuroscience. eNeuro embodies an emerging scientific vision that offers a new experience for authors and readers, all in support of the Society’s mission to advance understanding of the brain and nervous system.
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