首页> 美国卫生研究院文献>The Journal of Neuroscience >VGluT3+ Primary Afferents Play Distinct Roles in Mechanical and Cold Hypersensitivity Depending on Pain Etiology
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VGluT3+ Primary Afferents Play Distinct Roles in Mechanical and Cold Hypersensitivity Depending on Pain Etiology

机译:VGluT3 +初级传入取决于疼痛病因在机械性和冷性超敏反应中发挥不同的作用

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摘要

Sensory nerve fibers differ not only with respect to their sensory modalities and conduction velocities, but also in their relative roles for pain hypersensitivity. It is presently largely unknown which types of sensory afferents contribute to various forms of neuropathic and inflammatory pain hypersensitivity. Vesicular glutamate transporter 3-positive (VGluT3+) primary afferents, for example, have been implicated in mechanical hypersensitivity after inflammation, but their role in neuropathic pain remains under debate. Here, we investigated a possible etiology-dependent contribution of VGluT3+ fibers to mechanical and cold hypersensitivity in different models of inflammatory and neuropathic pain. In addition to VGluT3−/− mice, we used VGluT3-channelrhodopsin 2 mice to selectively stimulate VGluT3+ sensory afferents by blue light, and to assess light-evoked behavior in freely moving mice. We show that VGluT3−/− mice develop reduced mechanical hypersensitivity upon carrageenan injection. Both mechanical and cold hypersensitivity were reduced in VGluT3−/− mice in neuropathic pain evoked by the chemotherapeutic oxaliplatin, but not in the chronic constriction injury (CCI) model of the sciatic nerve. Further, we provide direct evidence that, despite not mediating painful stimuli in naive mice, activation of VGluT3+ sensory fibers by light elicits pain behavior in the oxaliplatin but not the CCI model. Immunohistochemical and electrophysiological data support a role of transient receptor potential melastatin 8-mediated facilitation of synaptic strength at the level of the dorsal horn as an underlying mechanism. Together, we demonstrate that VGluT3+ fibers contribute in an etiology-dependent manner to the development of mechano-cold hypersensitivity.
机译:感觉神经纤维不仅在感觉方式和传导速度方面有所不同,而且在疼痛超敏反应的相对作用方面也有所不同。目前基本上不清楚哪种类型的感觉传入引起各种形式的神经性和炎性疼痛超敏反应。例如,囊泡谷氨酸转运蛋白3阳性(VGluT3 + )原发性传入与炎症后的机械性超敏反应有关,但它们在神经性疼痛中的作用仍存在争议。在这里,我们研究了在不同的炎症性和神经性疼痛模型中,VGluT3 + 纤维对机械性和冷性超敏反应的可能病因学依赖性。除了VGluT3 -/-小鼠外,我们还使用VGluT3-channelrhodopsin 2小鼠通过蓝光选择性刺激VGluT3 + 感觉传入,并自由评估光诱发的行为移动的老鼠。我们显示,VGluT3 -/-小鼠在注射角叉菜胶后会产生降低的机械性超敏反应。在化学性奥沙利铂诱发的神经性疼痛中,VGluT3 -/-小鼠的机械性和冷性超敏反应均降低,但在坐骨神经的慢性收缩损伤(CCI)模型中则没有。此外,我们提供了直接的证据表明,尽管不介导幼稚小鼠的疼痛刺激,但光激活VGluT3 + 感觉纤维会在奥沙利铂而非CCI模型中引起疼痛行为。免疫组织化学和电生理学数据支持瞬态受体电位褪黑素8介导的在背角水平的突触强度的促进作用,这是潜在的机制。在一起,我们证明了VGluT3 + 纤维以病原学依赖的方式促进了机械性超敏反应的发展。

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