Systemic redox imbalance in severe COVID-19 patients
Isabelle A L Postiga1, Paula C Teixeira1, Carla Andretta Moreira Neves1
1Graduate Program in Health Sciences, Universidade Federal de Ciências da Saúde de Porto Alegre, Porto Alegre, Brazil.
Insights
Severe COVID-19 patients exhibit significant redox state disturbances and inflammation. Intensive care unit (ICU) patients show heightened oxidative stress and cell damage compared to non-ICU patients.
Area of Science:
- Biochemistry
- Immunology
- Critical Care Medicine
Background:
- Severe COVID-19 is characterized by systemic inflammation and oxidative stress.
- Understanding the redox state in critically ill COVID-19 patients is crucial for prognosis.
Purpose of the Study:
- To evaluate systemic redox and inflammatory markers in intensive care unit (ICU) and non-ICU severe COVID-19 patients.
- To assess changes in oxidative stress and inflammatory variables throughout hospitalization.
Main Methods:
- Blood samples analyzed at admission, T2 (5-7 days), and T3 (pre-discharge/death).
- Reactive oxygen species (ROS) production and mitochondrial membrane potential (MMP) measured in granulocytes and monocytes.
- THP-1 cell line incubated with patient plasma to assess viability and apoptosis.
Main Results:
- COVID-19 patients showed higher antioxidant capacity, protein oxidation, lipid peroxidation, and IL-6 at admission.
- ICU patients had elevated C-reactive protein, ROS, and protein oxidation compared to non-ICU patients.
- Granulocytes and monocytes displayed lower MMP and higher ROS in COVID-19 patients, particularly in the ICU group.
Conclusions:
- Disturbances in the redox state are a hallmark of severe COVID-19.
- Oxidative stress is associated with increased cell damage and death in severe COVID-19 patients.
- ICU patients experience a more severe redox imbalance and inflammatory response.
Abstract:
The aim of this study was to evaluate the systemic redox state and inflammatory markers in intensive care unit (ICU) or non-ICU severe COVID-19 patients during the hospitalization period. Blood samples were collected at hospital admission (T1) (Controls and COVID-19 patients), 5-7 days after admission (T2: 5-7 days after hospital admission), and at the discharge time from the hospital (T3: 0-72 h before leaving hospital or death) to analyze systemic oxidative stress markers and inflammatory variables. The reactive oxygen species (ROS) production and mitochondrial membrane potential (MMP) were analyzed in peripheral granulocytes and monocytes. THP-1 human monocytic cell line was incubated with plasma from non-ICU and ICU COVID-19 patients and cell viability and apoptosis rate were analyzed. Higher total antioxidant capacity, protein oxidation, lipid peroxidation, and IL-6 at hospital admission were identified in both non-ICU and ICU COVID-19 patients. ICU COVID-19 patients presented increased C-reactive protein, ROS levels, and protein oxidation over hospitalization period compared to non-ICU patients, despite increased antioxidant status. Granulocytes and monocytes of non-ICU and ICU COVID-19 patients presented lower MMP and higher ROS production compared to the healthy controls, with the highest values found in ICU COVID-19 group. Finally, the incubation of THP-1 cells with plasma acquired from ICU COVID-19 patients at T3 hospitalization period decreased cell viability and apoptosis rate. In conclusion, disturbance in redox state is a hallmark of severe COVID-19 and is associated with cell damage and death.
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