辅酶Q10氧化还原状态作为氧化应激生物标志物的评价

O. Goroshko, L. M. Krasnykh, V. Kukes, V. Zozina
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引用次数: 2

摘要

本文探讨了泛醌作为氧化还原分子的作用,其功能包括线粒体呼吸链中的电子传递和内源性抗氧化剂的再生。电子氧化还原途径的改变导致活性氧不受控制的释放,从而导致氧化应激和病理的发展。本研究的目的是确定辅酶Q10的含量及其在人体中的氧化还原状态,作为各种病理氧化应激的生物标志物。这是通过评估和整合各种病理中氧化、还原泛醌形式和总泛醌浓度变化的数据来实现的。慢性心力衰竭患者血清总泛素(0.68 μmol/L)低于对照组(0.97 μmol/L)。与健康对照组(1.23-1.41)相比,冠心病患者(0.49±0.34)和糖尿病患者(0.26±0.16)的氧化还原状态(以[泛醇]/[泛醌]浓度比表示)降低(0.49±0.34)。与丙二醛呈负相关。作者分析了通过患者血浆泛素浓度评估他汀类药物疗效的可能性。接受他汀类药物治疗的高脂血症患者,服用后泛醇浓度(从0.81降至0.46 μg/mL)和泛醌/总泛醌比值(从11%降至10%)均有统计学意义,证实了他汀类药物相关肌肉损伤发展的潜在机制。因此,辅酶Q10氧化还原状态以及氧化、还原和总泛醌浓度可作为心血管疾病、糖尿病患者氧化应激的有效生物标志物,也是评价高脂血症治疗效果的重要指标。
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Evaluation of Coenzyme Q10 Redox Status as a Biomarker of Oxidative Stress
The article examines the role of ubiquinone as a redox molecule whose functions consist in electron transport in the mitochondrial respiratory chain and regeneration of endogenous antioxidants. Changes in electron redox pathways cause uncontrolled release of reactive oxygen species, which leads to oxidative stress and development of pathologies. The objective of the study was to determine the content of coenzyme Q10 and its redox status in the human body as a biomarker of oxidative stress in various pathologies. This was achieved by assessing and consolidating data on changes in concentrations of the oxidized, reduced ubiquinone forms and total ubiquinone in various pathologies. Total serum ubiquinone was reduced in patients with chronic heart failure (0.68 μmol/L) compared with the control group (0.97 μmol/L). The redox status, expressed as the [ubiquinol]/ [ubiquinone] concentration ratio, decreased in patients with coronary heart disease (0.49 ± 0.34), diabetes (0.26 ± 0.16) compared with the healthy subjects (1.23–1.41). A negative correlation with malonic dialdehyde was observed. The authors analysed the possibility of assessing the efficacy of statin therapy by plasma ubiquinone concentration in patients. Patients with hyperlipidemia who received statins showed a statistically significant reduction in ubiquinol concentration after taking the drug (from 0.81 to 0.46 μg/mL) and the [ubiquinone]/[total ubiquinone] ratio (from 11 to 10 %), which confirms the potential mechanism of statinassociated muscle injury development. Thus, coenzyme Q10 redox status, as well as the concentrations of oxidized, reduced and total ubiquinone can be effective biomarkers of oxidative stress in cardiovascular diseases, diabetes, as well as an important indicator in evaluating the efficacy of hyperlipidemia treatment.
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