Oxidative Stress Status in COVID-19 Patients Hospitalized in Intensive Care Unit for Severe Pneumonia. A Pilot Study
Оксидативный стресс у пациентов с COVID-19, госпитализированных в отделение интенсивной терапии по поводу тяжелой пневмонии: пилотное исследование
2021-02-07
SCID: 54.1/kyxanduv
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COVID-19antioxidant deficiencyintensive care unitlipid peroxidationoxidative stress
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Abstract (AI)
Background: A key role of oxidative stress has been highlighted in the pathogenesis of COVID-19. However, little has been said about oxidative stress status (OSS) of COVID-19 patients hospitalized in intensive care unit (ICU). Material and Methods: Biomarkers of the systemic OSS included antioxidants (9 assays), trace elements (3 assays), inflammation markers (4 assays) and oxidative damage to lipids (3 assays). Results: Blood samples were drawn after 9 (7–11) and 41 (39–43) days of ICU stay, respectively in 3 and 6 patients. Vitamin C, thiol proteins, reduced glutathione, γ-tocopherol, β-carotene and PAOT® score were significantly decreased compared to laboratory reference values. Selenium concentration was at the limit of the lower reference value. By contrast, the copper/zinc ratio (as a source of oxidative stress) was higher than reference values in 55% of patients while copper was significantly correlated with lipid peroxides (r = 0.95, p < 0.001). Inflammatory biomarkers (C-reactive protein and myeloperoxidase) were significantly increased when compared to normals. Conclusions: The systemic OSS was strongly altered in critically ill COVID-19 patients as evidenced by increased lipid peroxidation but also by deficits in some antioxidants (vitamin C, glutathione, thiol proteins) and trace elements (selenium).
Key Findings
1
Antioxidant defenses were reduced, including vitamin C, thiol proteins, reduced glutathione, γ-tocopherol, β-carotene, and PAOT® score.
2
Critically ill COVID-19 patients hospitalized for severe pneumonia showed markedly altered systemic oxidative stress status.
3
Lipid peroxidation and inflammatory biomarkers, including C-reactive protein and myeloperoxidase, were increased, supporting substantial oxidative and inflammatory injury.
4
Selenium levels were near the lower reference limit, indicating a trace-element deficit in intensive-care COVID-19 patients.
5
The copper/zinc ratio exceeded reference values in 55% of patients, and copper strongly correlated with lipid peroxides (r = 0.95, p < 0.001).
Research Object
Critically ill COVID-19 patients hospitalized in the intensive care unit for severe pneumonia
Research Subject
Systemic oxidative stress status, including antioxidant and trace-element deficiencies, inflammation, and lipid peroxidation
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2021-02-07
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