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首页> 外文期刊>CNS neuroscience & therapeutics. >Zinc attenuates ferroptosis and promotes functional recovery in contusion spinal cord injury by activating Nrf2/GPX4 defense pathway
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Zinc attenuates ferroptosis and promotes functional recovery in contusion spinal cord injury by activating Nrf2/GPX4 defense pathway

机译:锌通过激活NRF2 / GPX4防御途径,抑制裂解症并促进挫伤脊髓损伤的功能恢复

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Aim Spinal cord injury (SCI) involves multiple pathological processes. Ferroptosis has been shown to play a critical role in the injury process. We wanted to explore whether zinc can inhibit ferroptosis, reduce inflammation, and then exert a neuroprotective effect. Methods The Alice method was used to establish a spinal cord injury model. The Basso Mouse Scale (BMS), Nissl staining, hematoxylin-eosin staining, and immunofluorescence analysis were used to investigate the protective effect of zinc on neurons on spinal cord neurons and the recovery of motor function. The regulation of the nuclear factor E2/heme oxygenase-1 (NRF2/HO-1) pathway was assessed, the levels of essential ferroptosis proteins were measured, and the changes in mitochondria were confirmed by transmission electron microscopy and 5,5′,6,6′-tetrachloro-1,1′,3,3′-tetraethyl-imidacarbocyanine iodide (JC-1) staining. In vitro experiments using VSC4.1 (spinal cord anterior horn motor neuroma cell line), 4-hydroxynonenal (4HNE), reactive oxygen species (ROS), superoxide dismutase (SOD), malondialdehyde (MDA), glutathione (GSH), lipid peroxides, and finally the levels of inflammatory factors were detected to assess the effect of zinc. Results Zinc reversed behavioral and structural changes after SCI. Zinc increased the expression of NRF2/HO-1, thereby increasing the content of glutathione peroxidase 4 (GPX4), SOD, and GHS and reducing the levels of lipid peroxides, MDA, and ROS. Zinc also rescued injured mitochondria and effectively reduced spinal cord injury and the levels of inflammatory factors, and the NRF2 inhibitor Brusatol reversed the effects of zinc. Conclusion Zinc promoted the degradation of oxidative stress products and lipid peroxides through the NRF2/HO-1 and GPX4 signaling pathways to inhibit ferroptosis in neurons.
机译:AIM脊髓损伤(SCI)涉及多种病理过程。已经证明了裂解子在损伤过程中发挥着关键作用。我们想探索锌是否可以抑制裂解性,减少炎症,然后发挥神经保护作用。方法采用Alice方法建立脊髓损伤模型。贝阵小鼠秤(BMS),尼斯污染芽孢杆菌菌染色和免疫荧光分析用于探讨锌对神经元对脊髓神经元的保护作用及电机功能的回收。评估核因子E2 / heme氧酶-1(NRF2 / HO-1)途径的调节,测量了必需的硬质蛋白水平,通过透射电子显微镜和5,5'确认了线粒体的变化,6 ,6'-四氯-1,1',3,3'-四乙基 - 咪达碳碳糖胺碘化物(JC-1)染色。使用VSC4.1(脊髓前喇叭电机神经瘤细胞系),4-羟基宁(4HNE),反应性氧物种(ROS),超氧化物歧化酶(SOD),丙二醛(MDA),谷胱甘肽(GSH),脂质过氧化物最后,检测到炎症因子的水平评估锌的作用。结果SCI后锌反转行为和结构变化。锌增加了NRF2 / HO-1的表达,从而增加了谷胱甘肽过氧化物酶4(GPX4),SOD和GH的含量,并降低了脂质过氧化物,MDA和RO的水平。锌还拯救了受伤的线粒体,有效地降低了脊髓损伤和炎症因素的水平,NRF2抑制剂Brusatol逆转了锌的影响。结论锌通过NRF2 / HO-1和GPX4信号传导途径促进氧化应激产物和脂质过氧化物的降解,以抑制神经元中的硬质子。

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