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Cardiovascular Risk Stratification Based on Oxidative Stress for Early Detection of Pathology
Nerea Corbacho-Alonso1, Montserrat Baldán-Martín1, Juan Antonio López2
1Department of Vascular Physiopathology, Hospital Nacional de Parapléjicos, SESCAM, Toledo, Spain.
Insights
Oxidative stress markers in young adults can improve cardiovascular disease risk prediction. This study reveals that protein oxidation levels correlate with cardiovascular events, offering new avenues for early detection.
Area of Science:
- Biochemistry
- Cardiovascular Medicine
- Proteomics
Background:
- Current cardiovascular (CV) risk algorithms underestimate risk in young adults due to age dependency.
- Oxidative stress is increasingly recognized as a factor in CV disease development.
- Novel biomarkers are needed for early CV pathology detection in younger populations.
Purpose of the Study:
- To investigate the role of oxidative stress in CV risk stratification among young adults.
- To explore novel plasma biomarkers for early detection of CV disease.
- To analyze dynamic thiol redox proteome and irreversible oxidation in relation to CV events.
Main Methods:
- Stratification of young adults into healthy controls, those with CV risk factors, and those with prior CV events.
- Analysis of plasma samples using FASILOX to examine the dynamic thiol redox proteome.
- Assessment of irreversible cysteine oxidation and differential protein expression of antioxidant response enzymes.
Main Results:
- Irreversible cysteine oxidation was significantly higher in patients with CV events compared to healthy subjects.
- Oxidation levels demonstrated a progressive pattern across the studied groups.
- Differential expression of glutathione reductase and glutaredoxin 1 suggests impaired redox homeostasis in CV disease.
Conclusions:
- This study establishes the implication of oxidative stress, including reversible and irreversible cysteine oxidation, in human plasma for CV risk stratification.
- Identified redox targets and quantified oxidative changes may enhance understanding of oxidative stress in CV disease.
- These findings could aid in stratifying CV event risk beyond traditional markers.
Abstract:
Current cardiovascular (CV) risk prediction algorithms are able to quantify the individual risk of CV disease. However, CV risk in young adults is underestimated due to the high dependency of age in biomarker-based algorithms. Because oxidative stress is associated with CV disease, we sought to examine CV risk stratification in young adults based on oxidative stress to approach the discovery of new markers for early detection of pathology. Young adults were stratified into (i) healthy controls, (ii) subjects with CV risk factors, and (iii) patients with a reported CV event. Plasma samples were analyzed using FASILOX, a novel approach to interrogate the dynamic thiol redox proteome. We also analyzed irreversible oxidation by targeted searches using the Uniprot database. Irreversible oxidation of cysteine (Cys) residues was greater in patients with reported CV events than in healthy subjects. These results also indicate that oxidation is progressive. Moreover, we found that glutathione reductase and glutaredoxin 1 proteins are differentially expressed between groups and are proteins involved in antioxidant response, which is in line with the impaired redox homeostasis in CV disease. This study, for the first time, describes the oxidative stress (reversible and irreversible Cys oxidation) implication in human plasma according to CV risk stratification. The identification of redox targets and the quantification of protein and oxidative changes might help to better understand the role of oxidative stress in CV disease, and aid stratification for CV events beyond traditional prognostic and diagnostic markers. Antioxid. Redox Signal. 35, 602-617.
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