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The voltage-gated proton channel Hv1 contributes to neuronal injury and motor deficits in a mouse model of spinal cord injury

机译:电压门控质子通道HV1有助于脊髓损伤的小鼠模型中的神经元损伤和电动机缺陷

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摘要

Abstract Traumatic injury to the spinal cord initiates a series of pathological cellular processes that exacerbate tissue damage at and beyond the original site of injury. This secondary damage includes oxidative stress and inflammatory cascades that can lead to further neuronal loss and motor deficits. Microglial activation is an essential component of these secondary signaling cascades. The voltage-gated proton channel, Hv1, functionally expressed in microglia has been implicated in microglia polarization and oxidative stress in ischemic stroke. Here, we investigate whether Hv1 mediates microglial/macrophage activation and aggravates secondary damage following spinal cord injury (SCI). Following contusion SCI, wild-type (WT) mice showed significant tissue damage, white matter damage and impaired motor recovery. However, mice lacking Hv1 (Hv1 −/− ) showed significant white matter sparing and improved motor recovery. The improved motor recovery in Hv1 −/− mice was associated with decreased interleukin-1β, reactive oxygen/ nitrogen species production and reduced neuronal loss. Further, deficiency of Hv1 directly influenced microglia activation as noted by decrease in microglia numbers, soma size and reduced outward rectifier K+ current density in Hv1 −/− mice compared to WT mice at 7 d following SCI. Our results therefore implicate that Hv1 may be a promising potential therapeutic target to alleviate secondary damage following SCI caused by microglia/macrophage activation.
机译:摘要脊髓的创伤性损伤引发了一系列病理细胞过程,使组织损伤及以外的原始损伤部位造成。这种二次损害包括可导致进一步的神经元损失和电动机缺陷的氧化应激和炎症级联。小胶质激活是这些二次信号传导级联的必要组分。在微胶质细胞中功能表达的电压门控质子通道HV1已经涉及缺血性卒中中的小凝血性偏振和氧化应激。在此,我们研究了HV1是否介导小胶质/巨噬细胞激活并加剧脊髓损伤后的二次损伤(SCI)。挫伤SCI后,野生型(WT)小鼠显示出显着的组织损伤,白质损坏和电动机恢复受损。然而,缺乏HV1(HV1 - / - )的小鼠显示出显着的白质备件和改善的电动机恢复。 HV1 - / - 小鼠中的改善的电动机回收与白细胞介素-1β,反应性氧/氮物质产生降低有关,并且神经元损失降低。此外,HV1的缺乏直接影响小凝血酶激活,如通过在SCI之后的7d下的WT小鼠中,HV1 - / - 小鼠中的微细胞数量,SOMA尺寸和向外整流k +电流密度降低。因此,我们的结果暗示HV1可能是有希望的潜在治疗靶标,以缓解由小胶质细胞/巨噬细胞激活引起的SCI后的二次损伤。

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