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Published on: August 17, 2022
Cardiovascular risk factors and molecular routes underlying endothelial dysfunction: Novel opportunities for primary
Giuditta Benincasa1, Enrico Coscioni2, Claudio Napoli1
1Department of Advanced Medical and Surgical Sciences (DAMSS), University of Campania "Luigi Vanvitelli", Pz. Miraglia 2, Naples 80138, Italy.
Insights
Identifying early biomarkers for endothelial dysfunction is crucial for cardiovascular prevention. Lifestyle changes can restore endothelial function by reducing inflammation and increasing nitric oxide (NO) bioavailability.
Area of Science:
- Cardiovascular Medicine
- Molecular Biology
- Biomarker Discovery
Background:
- Endothelial dysfunction is a key factor in cardiovascular disease, influenced by traditional and emerging risk factors.
- It involves reduced nitric oxide (NO) bioavailability and increased reactive oxygen species (ROS) due to epigenetic changes in the endothelial nitric oxide synthase (eNOS) gene.
- Early detection is challenging due to the lack of established biomarkers.
Purpose of the Study:
- To review molecular pathways of early endothelial dysfunction in endothelial cells (ECs).
- To identify novel EC-specific biomarkers for predicting and diagnosing endothelial dysfunction.
- To explore the impact of lifestyle modifications on restoring endothelial function.
Main Methods:
- Literature review of molecular routes and biomarkers associated with endothelial dysfunction.
- Analysis of associations between endothelial dysfunction indexes (e.g., flow-mediated dilation) and potential biomarkers (e.g., endothelial microparticles, endoglin, endocan, irisin).
- Focus on clinical trials investigating lifestyle interventions and their molecular effects.
Main Results:
- Associations found between endothelial dysfunction markers and increased endothelial microparticles, endoglin, and endocan, and decreased irisin.
- Epigenetic dysregulation of eNOS and increased ROS are central to endothelial dysfunction.
- Lifestyle modifications like smoking cessation and exercise show potential to restore endothelial function.
Conclusions:
- Novel EC-specific biomarkers are emerging for early detection of endothelial dysfunction.
- Lifestyle interventions can reverse endothelial dysfunction through epigenetic mechanisms, reducing inflammation and oxidative stress.
- Further research and clinical validation of biomarkers and interventions are needed for cardiovascular primary prevention.
Abstract:
One of the major challenges of cardiovascular primary prevention approach is the absence of early biomarkers of endothelial dysfunction which may be useful for identifying at-risk subjects. Endothelial dysfunction is a systemic disorder in which traditional cardiovascular risk factors, such as aging, gender, hypertension, smoking, hyperglycemia, and dyslipidemia, as well as emerging risk determinants, such as fetal factors, gut microbiome alteration, clonal hematopoiesis, air pollution, and sleep disorders act synergistically to tip the endothelial balance in favor of vasoconstrictive, pro-inflammatory, and pro-thrombotic phenotypes. Endothelial dysfunction can start already in fetal life and may be regained once detrimental stimuli are removed. The hallmark of endothelial dysfunction is a marked reduction of nitric oxide (NO) bioavailability owing to epigenetic-sensitive dysregulation of the endothelial nitric oxide synthase (eNOS) gene and upregulation of reactive oxygen species (ROS) in endothelial cells (ECs). Advance in liquid-based assays and molecular biology tools are providing novel potential EC-specific biomarkers for prediction and diagnosis of endothelial dysfunction. Significant associations between clinically useful indexes of endothelial dysfunction, mainly brachial artery flow-mediated dilation (FMD), and increased number of endothelial microparticles (EMPs), increased levels of endoglin and endocan, as well as reduced levels of irisin were observed in subjects with one or more traditional risk factors. However, none entered in clinical practice yet. Smoking cessation, weight loss, physical exercise, and diet control are the milestones of cardiovascular primary prevention, and they may restore endothelial function via epigenetic-sensitive pathways able to reduce inflammation and oxidative stress and increase NO production . We briefly summarize well-known and novel molecular routes driving early endothelial dysfunction mainly in human ECs and related potential biomarkers which may add predictive or diagnostic value to the traditional non-invasive techniques. Also, we focus on clinical trials investigating lifestyle modifications and their impact on molecular routes involved in restoring endothelial function.
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