依达拉奉抑制多发性硬化症患者吞噬和pkc刺激的粒细胞中活性氧的产生

IF 2.6 Q2 CLINICAL NEUROLOGY
Pedro Henrique Villar-Delfino, N. A. Gomes, P. P. Christo, J. A. Nogueira-Machado, C. Volpe
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引用次数: 2

摘要

背景氧化应激与多发性硬化症的发病机制有关。依达拉奉(EDV)已被认为是中枢神经系统疾病的治疗资源,并能有效降低氧化应激。然而,EDV的抗氧化机制研究很少。目的本研究旨在评估EDV对MS患者和健康对照组静息、吞噬和PKC激活的粒细胞的影响。方法用鲁米诺依赖性化学发光法评价EDV对吞噬细胞(调理颗粒存在下的ROS产生)和PKC刺激的粒细胞中ROS产生的影响。在一些实验中使用Calphostin C与EDV进行比较。结果EDV抑制MS患者和健康对照组调理颗粒和PKC刺激的粒细胞吞噬活性氧的产生。在钙磷锡C存在下,ROS产生的抑制作用与EDV观察到的相似。结论EDV参与调节MS氧化应激的ROS-PKC-NOX信号通路。EDV是控制MS氧化性先天免疫反应的一种有前景的治疗选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Edaravone Inhibits the Production of Reactive Oxygen Species in Phagocytosis- and PKC-Stimulated Granulocytes from Multiple Sclerosis Patients Edaravone Modulate Oxidative Stress in Multiple Sclerosis
Background Oxidative stress is associated with the pathogenesis of MS. Edaravone (EDV) has been proposed as a therapeutic resource for central nervous system diseases, and it was effective in reducing oxidative stress. However, the antioxidant mechanisms of EDV are poorly studied. Objective This study aimed to evaluate the effects of EDV on resting, phagocytosis, and PKC-activated granulocytes derived from MS patients and a healthy control group. Methods The effects of EDV on ROS production in phagocytosis (ROS production in the presence of opsonized particles) and PKC-stimulated granulocytes were evaluated in a luminol-dependent chemiluminescence method. Calphostin C was used in some experiments to compare with those of EDV. Results EDV inhibited ROS production in phagocytosis of opsonized particles and PKC-stimulated granulocytes from MS patients and healthy control group. In the presence of calphostin C, the inhibition of ROS production was similar to that observed with EDV. Conclusion These findings suggest the involvement of EDV on the ROS-PKC-NOX signaling pathways modulating oxidative stress in MS. EDV represents a promising treatment option to control oxidative innate immune response for MS.
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来源期刊
CiteScore
6.90
自引率
0.00%
发文量
39
审稿时长
8 weeks
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