The Role of Oxidants in Percutaneous Coronary Intervention-Induced Endothelial Dysfunction: Can We Harness Redox Signaling to Improve Clinical Outcomes?
Kathryn WolhuterStephanie M Y KongChristopher P StanleyJason C KovacicPublished in: Antioxidants & redox signaling (2023)
Significance: Coronary artery disease (CAD) is commonly treated using percutaneous coronary interventions (PCI). However, PCI with stent placement damages the endothelium, and failure to restore endothelial function may result in PCI failure with poor patient outcomes. Recent Advances: Oxidative signaling is central to maintaining endothelial function. Potentiation of oxidant production, as observed post-PCI, results in endothelial dysfunction (ED). This review delves into our current understanding of the physiological role that endothelial-derived oxidants play within the vasculature and the effects of altered redox signaling during dysfunction. We then examine the impact of PCI and intracoronary stent placement on oxidant production in the endothelium, which can culminate in stent failure. Finally, we explore how recent advances in PCI and stent technologies aim to mitigate PCI-induced oxidative damage and improve clinical outcomes. Critical Issues: Current PCI technologies exacerbate cellular oxidant levels, driving ED. If left uncontrolled, oxidative signaling leads to increased intravascular inflammation, restenosis, and neoatherosclerosis. Future Directions: Through the development of novel biomaterials and therapeutics, we can limit PCI-induced oxidant production, allowing for the restoration of a healthy endothelium and preventing CAD recurrence.
Keyphrases
- coronary artery disease
- percutaneous coronary intervention
- st elevation myocardial infarction
- st segment elevation myocardial infarction
- acute myocardial infarction
- antiplatelet therapy
- coronary artery bypass grafting
- acute coronary syndrome
- cardiovascular events
- high glucose
- atrial fibrillation
- oxidative stress
- nitric oxide
- emergency department
- diabetic rats
- aortic stenosis
- coronary artery bypass
- coronary artery
- minimally invasive
- type diabetes
- heart failure
- endothelial cells