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Circulating Leukocytes and Oxidative Stress in Cardiovascular Diseases: A State of the Art
Speranza Rubattu1,2, Maurizio Forte2, Salvatore Raffa1,3
1Department of Clinical and Molecular Medicine, School of Medicine and Psychology, Sapienza University of Rome, Italy.
Insights
Measuring oxidative stress in circulating leukocytes offers a promising, noninvasive method to monitor cardiovascular diseases (CVDs). Leukocyte oxidant levels correlate with CVD severity and treatment impact, aiding clinical research.
Area of Science:
- Cardiovascular Research
- Biomedical Science
- Oxidative Stress Studies
Background:
- Oxidative stress is a key factor in cardiovascular disease (CVD) development and progression.
- Current methods for monitoring oxidative stress in CVD patients are insufficient.
- Leukocytes are potential biomarkers as they circulate throughout the body.
Purpose of the Study:
- To review the potential of measuring oxidative stress in circulating leukocytes for CVD monitoring.
- To assess the correlation between leukocyte oxidative stress and CVD severity.
- To evaluate leukocytes as both disease markers and contributors to CVD progression.
Main Methods:
- Review of studies measuring oxidative stress in circulating leukocytes.
- Analysis of leukocyte oxidant levels in patients with hypertension, atherosclerosis, and heart failure.
- Correlation analysis between oxidative stress markers and CVD severity.
Main Results:
- Leukocyte oxidative stress levels consistently correlate with CVD severity and complications.
- Leukocytes serve dual roles as indicators and active participants in CVD progression.
- Leukocyte oxidative stress reflects the effectiveness of therapeutic interventions.
Conclusions:
- Measuring oxidative stress in circulating leukocytes is a promising, noninvasive tool for CVD research and clinical practice.
- This method can monitor the role of oxidative stress in CVDs and assess treatment impact.
- Further development of leukocyte isolation and oxidative stress measurement is warranted.
Abstract:
Increased oxidative stress from both mitochondrial and cytosolic sources contributes to the development and the progression of cardiovascular diseases (CVDs), and it is a target of therapeutic interventions. The numerous efforts made over the last decades in order to develop tools able to monitor the oxidative stress level in patients affected by CVDs rely on the need to gain information on the disease state. However, this goal has not been satisfactorily accomplished until now. Among others, the isolation of circulating leukocytes to measure their oxidant level offers a valid, noninvasive challenge that has been tested in few pathological contexts, including hypertension, atherosclerosis and its clinical manifestations, and heart failure. Since leukocytes circulate in the blood stream, it is expected that they might reflect quite closely both systemic and cardiovascular oxidative stress and provide useful information on the pathological condition. The results of the studies discussed in the present review article are promising. They highlight the importance of measuring oxidative stress level in circulating mononuclear cells in different CVDs with a consistent correlation between degree of oxidative stress and severity of CVD and of its complications. Importantly, they also point to a double role of leukocytes, both as a marker of disease condition and as a direct contributor to disease progression. Finally, they show that the oxidative stress level of leukocytes reflects the impact of therapeutic interventions. It is likely that the isolation of leukocytes and the measurement of oxidative stress, once adequately developed, may represent an eligible tool for both research and clinical purposes to monitor the role of oxidative stress on the promotion and progression of CVDs, as well as the impact of therapies.
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