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首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Oxidative Damage of Blood Platelets Correlates with the Degree of Psychophysical Disability in Secondary Progressive Multiple Sclerosis
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Oxidative Damage of Blood Platelets Correlates with the Degree of Psychophysical Disability in Secondary Progressive Multiple Sclerosis

机译:血小板的氧化损伤与次级进展多发性硬化症中的心理物理残疾程度相关

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The results of past research studies show that platelets are one of the main sources of reactive oxygen species (ROS) and reactive nitrogen species (RNS) to be found in the course of many pathological states. The aim of this study was to determine the level of oxidative/nitrative stress biomarkers in blood platelets obtained from multiple sclerosis (MS) patients (n=110) and to verify their correlation with the clinical parameters of the psychophysical disability of patients. The mitochondrial metabolism of platelets was assessed by measuring the intracellular production of ROS using the fluorescence method with DCFH-DA dye and by identification of changes in the mitochondrial membrane potential of platelets using the JC-1 dye. Moreover, we measured the mRNA expression for the gene encoding the cytochrome c oxidase subunit I (MTCO-1) and glyceraldehyde 3-phosphate dehydrogenase (GAPDH) in platelets and megakaryocytes using the RT-qPCR method, as well as the concentration of NADPH oxidase (NOX-1) by the ELISA method. Our results proved an increased level of oxidative/nitrative damage of proteins (carbonyl groups, 3-nitrotyrosine) (p0.0001) and decreased level of -SH in MS (p0.0001) and also a pronounced correlation between these biomarkers and parameters assessed by the Expanded Disability Status Scale and the Beck’s Depression Inventory. The application of fluorescence methods showed mitochondrial membrane potential disruption (p0.001) and higher production of ROS in platelets from MS compared to control (p0.0001). Our research has also confirmed the impairment of red-ox metabolism in MS, which was achieved by increasing the relative mRNA expression in platelets for the genes studied (2-fold increase for the MTCO-1 gene and 1.5-fold increase in GAPDH gene, p0.05), as well as the augmented concentration of NOX-1 compared to control (p0.0001). Our results indicate that the oxidative/nitrative damage of platelets is implicated in the pathophysiology of MS, which reflects the status of the disease.
机译:过去研究研究的结果表明,血小板是在许多病理状态过程中发现的活性氧物质(ROS)和反应性氮物质(RNS)的主要来源之一。本研究的目的是确定从多发性硬化症(MS)患者(n = 110)获得的血小板中氧化/氮化应激生物标志物的水平,并验证它们与患者心理物理残疾的临床参数的相关性。通过使用DCFH-DA染料的荧光法测量ROS的细胞内产生并通过使用JC-1染料鉴定血小板线粒体膜电位的变化来评估血小板的线粒体代谢。此外,我们使用RT-QPCR方法测量编码细胞色素C氧化酶亚基I(MTCO-1)和甲状腺细胞的细胞色素C氧化酶亚基I(MTCO-1)和甘油醛3-磷酸脱氢酶(GAPDH)的mRNA表达,以及NADPH氧化酶的浓度(NOX-1)通过ELISA方法。我们的结果证明了蛋白质氧化/氮化损伤水平(羰基,3-硝基曲酮)(P <0.0001)和MS中的-SH水平降低(P <0.0001),并且这些生物标志物与评估参数之间的显着相关性通过扩大的残疾状态规模和Beck的抑郁库存。荧光方法的应用显示出线粒体膜潜在破坏(P <0.001),与对照相比,来自MS的血小板中的ROS较高产生(P <0.0001)。我们的研究还证实了MS中红氧代谢的损害,这是通过增加所研究的基因的血小板的相对mRNA表达(MTCO-1基因2倍的增加和GAPDH基因增加1.5倍, P <0.05),与对照相比,NOX-1的增强浓度(P <0.0001)。我们的结果表明,血小板的氧化/氮化损伤涉及MS的病理生理学,这反映了疾病的状态。

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