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Percutaneous Coronary Intervention for Chronic Total Occlusions Modulates Cardiac Hypoxic and Inflammatory Stress
Luis Carlos Maestre-Luque1,2,3, Rafael Gonzalez-Manzanares1,2,3,4, Ignacio Gallo1,2,3,4
1Department of Cardiology, Reina Sofia University Hospital, 14002 Córdoba, Spain.
Insights
Percutaneous revascularization for chronic total occlusions (CTO-PCI) may reduce cardiac hypoxia and inflammation. Interleukin-10 levels after CTO-PCI can predict improvements in left ventricular ejection fraction (LVEF).
Area of Science:
- Cardiology
- Biomarker Research
- Interventional Cardiology
Background:
- Cardiac hypoxia and inflammation in chronic coronary artery disease are not fully understood.
- The coronary sinus (CS) offers insights into the cardiac microenvironment.
- Chronic total occlusions (CTO) represent a significant challenge in coronary artery disease management.
Purpose of the Study:
- To assess acute changes in CS hypoxia and inflammation biomarkers post-CTO-PCI.
- To evaluate systemic inflammation changes and predict left ventricular ejection fraction (LVEF) improvement.
- To explore the role of CS biomarkers in predicting LVEF recovery after CTO-PCI.
Main Methods:
- Analysis of CS samples before and after CTO-PCI in 33 patients.
- Measurement of 26 hypoxia and inflammation biomarkers using proximity extension assay.
- Assessment of systemic inflammation markers and LVEF via cardiac MRI at baseline and 6 months.
Main Results:
- CTO-PCI significantly decreased CS pro-angiogenic biomarkers (e.g., angiopoietin-1, VEGF).
- Interleukin-10 (anti-inflammatory) increased, while some pro-inflammatory biomarkers (e.g., IL-1β) decreased in CS.
- A reduction in systemic inflammation (hs-CRP) was observed post-procedure, with IL-10 predicting LVEF improvement.
Conclusions:
- CTO-PCI may alleviate cardiac hypoxic and inflammatory stress.
- The study provides exploratory evidence for CTO-PCI's impact on cardiac microenvironment.
- Larger, controlled studies are needed to confirm these findings and the predictive role of IL-10.
Abstract:
Background/Objectives: The cardiac hypoxia- and inflammation-associated processes in patients with chronic coronary artery disease remain unknown. The coronary sinus (CS) can be used to explore changes in cardiac microenvironment. This study sought to evaluate acute changes in the CS concentration of hypoxia and inflammation-associated biomarkers after the percutaneous revascularization of chronic total occlusions (CTO-PCI). Additionally, we explored changes in systemic inflammation and the potential of CS biomarkers to predict left ventricular ejection fraction (LVEF) improvement on follow-up. Methods: Thirty-three patients undergoing CTO-PCI were included. Samples from CS were collected before and after the revascularization. Twenty-six protein biomarkers associated with hypoxia and inflammation were measured using proximity extension assay technology. Systemic inflammation markers and LVEF on cardiac magnetic resonance imaging were assessed at baseline and 6-month follow-up. Results: CTO-PCI yielded a significant decrease in the concentration of CS pro-angiogenic biomarkers (angiopoietin-1, vascular endothelial growth factors). In addition, there was a significant increase in the anti-inflammatory biomarker interleukin-10 and a decrease in several pro-inflammatory biomarkers like interleukin-1β. The acute response in cardiac microenvironment was followed by a mid-term reduction in systemic inflammatory markers, particularly high-sensitivity C-reactive protein. Notably, interleukin-10 showed good performance to identify patients achieving LVEF improvement on follow-up in our cohort. Conclusions: Our results suggest that CTO-PCI might attenuate cardiac hypoxic and inflammatory stress. These exploratory findings warrant confirmation in larger, controlled studies.
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