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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Deficiency of TREK TREK ‐1 potassium channel exacerbates secondary injury following spinal cord injury in mice
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Deficiency of TREK TREK ‐1 potassium channel exacerbates secondary injury following spinal cord injury in mice

机译:Trek Trek -1 -1钾通道的缺乏加剧了小鼠脊髓损伤后的继发性损伤

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Abstract Spinal cord injury ( SCI ) involves complex pathological process which can be complicated by secondary injury. TREK ‐1 is a member of the two‐pore domain potassium (K2P) channel family, which can be modulated by a number of physiological and pathological stimuli. Recent studies suggest that TREK ‐1 plays an active role in depression, pain and neuroprotection. However, its role in the pathological process after SCI remains unclear. In this study, we tested the expression and function of TREK ‐1 in spinal cord of mice after traumatic SCI . TREK ‐1 was widely expressed in mice spinal cord, including astrocytes and neurons. Deficiency of TREK ‐1 significantly exacerbated focal inflammatory responses as indicated by the increased accumulation of microglia/macrophage as well as pro‐inflammatory factor interleukin‐1 beta ( IL ‐1β) and tumor necrosis factor alpha expression. Meanwhile, TREK ‐1 knockout mice showed enhanced reactive astrogliosis, chondroitin sulphate proteoglycans ( CSPG s) production and decreased glutamate transporter‐1 expression compared to the wide‐type mice after SCI . Furthermore, TREK ‐1 deficiency promoted neurons and oligodendrocytes apoptosis, aggravated demyelination, cavity formation and retarded motor recovery. In summary, our findings provide the first in?vivo evidence suggesting that TREK ‐1 may thereby constitute a promising therapeutic target to treat acute SCI .
机译:摘要脊髓损伤(SCI)涉及复杂的病理过程,其被继发伤害变得复杂。 Trek -1是双孔结构型钾(K2P)通道系列的成员,其可以通过许多生理和病理刺激来调节。最近的研究表明,Trek -1在抑郁症,痛苦和神经保护方面发挥着积极作用。然而,它在SCI仍然不清楚后的病理过程中的作用。在这项研究中,我们在创伤性SCI后测试了Trek -1在小鼠脊髓中的表达和功能。 Trek -1广泛表达小鼠脊髓,包括星形胶质细胞和神经元。 Trek -1缺乏显着加剧了局灶性炎症反应,如下临床/巨噬细胞的积累量增加以及促炎因子白细胞介素-1β(IL-1β)和肿瘤坏死因子α表达所表明。同时,Trek -1敲除小鼠表现出增强的活性星球菌症,硫酸软骨素硫酸盐蛋白多糖(CSPG S)产生和降低的谷氨酸转运蛋白-1表达与SCI后的宽型小鼠相比。此外,Trek -1缺乏促进神经元和少突胚细胞凋亡,加重脱髓鞘,腔体形成和延迟电动机恢复。总之,我们的研究结果提供了第一个体内证据,提示Trek -1可以构成治疗急性SCI的有希望的治疗靶标。

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