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The Effects of Icariin on Enhancing Motor Recovery Through Attenuating Pro-inflammatory Factors and Oxidative Stress via Mitochondrial Apoptotic Pathway in the Mice Model of Spinal Cord Injury

机译:赤石素在脊髓损伤小鼠模型中通过线粒体凋亡途径衰减促炎细胞凋亡途径增强电动机恢复的影响

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摘要

Spinal cord injury (SCI) is a severe medical problem leading to crucial life change. Icariin (ICA) is a natural flavonoid compound extracted from the Chinese herb Epimedium brevicornum which has neuroprotective effects. But little is known about the relationship between ICA and SCI. We hypothesized ICA may enhance motor recovery through attenuating inflammation, oxidative stress and mitochondrial dysfunction. Mice were randomly assigned to sham, SCI, ICA 20 μmol/kg (low dose) and ICA 50 μmol/kg (high dose) groups. And Behavioral, biochemical, molecular biological, immunofluorescent and histological assays were performed. First, ICA enhanced motor recovery greatly at 14, 28, and 42 days and protected spinal cord tissues especially in the high dose group. Meanwhile, ICA decreased the production of interleukin-1 beta, tumor necrosis factor-alpha and inducible nitric oxide synthase at 24 h and 3 days after SCI. The level of mitochondrial reduced glutathione, superoxide dismutase, adenosine triphosphate (ATP), Na+-K+-ATPase, mitochondrial membrane potential, state III respiration rate and the respiratory control ratio were also significantly increased, while malondialdehyde level and Ca2+ concentration were decreased by ICA. Furthermore, ICA decreased the expression of mitochondrial apoptotic proteins at 3 days after SCI. More importantly, transferase UTP nick end labeling (TUNEL) and Nissl staining implied that ICA at a high dose inhibited the neuronal apoptosis after SCI. Our research indicated that early and continuous treatment of ICA at a high dose significantly enhanced motor recovery after SCI through inhibiting pro-inflammatory factors, oxidative stress and neuronal apoptosis via mitochondrial apoptotic pathway.
机译:脊髓损伤(SCI)是导致重要生命变化的严重医疗问题。淫羊藿苷(ICA)是从中国草药淫羊藿其具有神经保护作用中提取的天然类黄酮化合物。但鲜为人知的是,ICA和SCI之间的关系。我们假设ICA可以通过减弱炎症,氧化应激和线粒体功能障碍的加强电机恢复。小鼠被随机分配到假,SCI,ICA 20微摩尔/ kg的(低剂量)和ICA 50微摩尔/ kg的(高剂量)组。和行为,进行了生物化学,分子生物学,免疫和组织学检测。首先,ICA增强电机恢复在大大14,图28,和42天,并保护脊髓组织尤其是在高剂量组。同时,ICA生产白细胞介素-1β,肿瘤坏死因子-α和诱导型一氧化氮合成酶的减少在第24小时和脊髓损伤后3天。线粒体还原型谷胱甘肽,超氧化物歧化酶,腺苷三磷酸(ATP)的水平,的Na + -K + -ATP酶,线粒体膜电位,状态III呼吸速率和呼吸控制率也显著增加,而丙二醛水平和Ca2 +浓度通过ICA降低。此外,ICA SCI后第3天降低线粒体凋亡蛋白的表达。更重要的是,转移UTP缺口末端标记(TUNEL)和尼氏染色意味着ICA在高剂量抑制脊髓损伤后神经元凋亡。我们的研究通过经由线粒体凋亡途径抑制促炎因子,氧化应激和细胞凋亡指示SCI后显著增强电机恢复在高剂量早期和连续处理ICA的。

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