Endothelial dysfunction mediated by interleukin-18 in patients with ischemic heart disease undergoing coronary artery
Jadranko Sokolic1, Vlatka Sotosek Tokmadzic2, Danijel Knezevic3
1Clinic of Anesthesiology and Intensive Care Medicine, Clinical Hospital Center Rijeka, 51 000 Rijeka, Kresimirova 42, Croatia.
Insights
Coronary artery bypass grafting (CABG) can cause heart injury. Interleukin-18 (IL-18) may drive this injury by activating lymphocytes, potentially predicting myocardial infarction after CABG surgery.
Area of Science:
- Cardiology
- Immunology
- Vascular Biology
Background:
- Coronary artery bypass grafting (CABG) is the gold standard for advanced ischemic heart disease but can cause ischemia/reperfusion injury.
- This injury involves a strong inflammatory response, with Interleukin-18 (IL-18) as a key mediator released during and after surgery.
- Endothelial glycocalyx damage, prevalent in ischemic heart disease, is exacerbated during CABG, increasing adverse events like myocardial infarction.
Purpose of the Study:
- To investigate the hypothesis that IL-18 released during CABG surgery correlates with circulating lymphocyte activity.
- To explore the role of IL-18 in lymphocyte-mediated cytotoxicity towards damaged endothelial cells.
- To determine if IL-18 levels can predict myocardial infarction occurrence post-CABG.
Main Methods:
- Measuring local IL-18 concentrations in the coronary sinus and systemic circulation during CABG.
- Correlating IL-18 levels with immunological parameters, including glycocalyx degradation products and lymphocyte cytotoxic mediators.
- Assessing lymphocyte activity and endothelial cell activation markers.
Main Results:
- IL-18 is released locally and systemically during CABG surgery.
- IL-18 levels correlate with the activity of circulating lymphocytes and cytotoxic mediators.
- Evidence suggests IL-18 contributes to endothelial cell damage and subsequent myocardial infarction.
Conclusions:
- IL-18 plays a significant role in the inflammatory cascade following CABG surgery.
- IL-18-induced lymphocyte cytotoxicity contributes to endothelial damage and myocardial infarction.
- Measuring IL-18 may offer a predictive biomarker for myocardial infarction in CABG patients.
Abstract:
When medication management or percutaneous coronary intervention is not successful in patients with advanced ischemic heart disease, surgical revascularisation-predominantly coronary artery bypass grafting (CABG)-is considered the gold standard. However, CABG surgery can lead to ischemia/reperfusion injury, which is characterized by a strong inflammatory response. Interleukin (IL)-18, is a strong inflammatory mediator, that is released from cardiomyocytes and can be found in the systemic circulation of patients during and immediately after CABG surgery. The existing damage of endothelial glycocalyx in patients with ischemic heart disease is further impaired concurrently during the surgery due to the anaesthesia-surgical technique used and intravascular fluid loading. This results in the increased incidence of adverse events, including myocardial infarction. IL-18 leads to the activation of lymphocyte cytotoxicity via cytotoxic mediators (Fas ligand, Tumour necrosis factor (TNF)-related apoptosis-inducing ligand, perforin, and granulysin). We hypothesize that IL-18 is released locally in the heart and the systemic circulation in patients undergoing CABG surgery and may be correlated with the level of activity of circulating lymphocytes. In turn, this may lead to lymphocyte-mediated cytotoxicity directed toward damaged and activated endothelial cells. Shear stress glycocalyx, as well as damaged and activated endothelial cells then become the main the source of pro-inflammatory cytokines, chemokines, and adhesion molecules. These attract activated lymphocytes to adhere to the endothelium or enter the subintimal layer, increasing existing or initiating the formation of new plaques, which leads to the development of myocardial infarction during or shortly after surgery. To evaluate our hypothesis, we will measure the local concentration of IL-18 in the sinus coronarius and systemic circulation. These values will then be correlated with immunological and biochemical parameters, predominantly with the concentration of degradation products of glycocalyx and cytotoxic mediators in activated lymphocytes. If our hypothesis is correct, measuring the IL-18 concentration that is responsible for glycocalyx deterioration, may become a useful tool for predicting myocardial infarction occurrence in patients undergoing CABG surgery.
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