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Circulating Cytokines in Myocardial Infarction Are Associated With Coronary Blood Flow
Anna Kalinskaya1,2, Oleg Dukhin1,2, Anna Lebedeva1
1Laboratory of Atherothrombosis, Cardiology Department, Moscow State University of Medicine and Dentistry, Moscow, Russia.
Insights
Inflammation markers and clot formation in acute myocardial infarction (AMI) vary with artery blood flow. Cytokine levels correlate with AMI type and severity, impacting artery patency.
Area of Science:
- Cardiology
- Immunology
- Hematology
Background:
- Systemic inflammation severity correlates with acute myocardial infarction (AMI) clinical course.
- Circulating cytokines and endothelial dysfunction are implicated in clot formation during AMI.
- Understanding these factors is crucial for managing AMI patients.
Purpose of the Study:
- To assess circulating cytokine concentrations in AMI patients.
- To evaluate endothelial function and blood clotting.
- To determine the relationship between these factors and blood flow through the infarction-related artery (IRA).
Main Methods:
- Included 75 AMI patients (58 STEMI, 17 non-STEMI).
- Performed flow-mediated dilation (FMD) test, thrombodynamics, and rotational thromboelastometry.
- Assessed 14 serum cytokines using xMAP technology.
Main Results:
- Non-STEMI patients showed higher MDC, MIP-1β, and TNF-α levels.
- Impaired IRA blood flow (TIMI 0-1) correlated with higher clot growth rates, earlier spontaneous clot onset, CRP, and IL-10.
- Preserved IRA blood flow (TIMI 2-3) was associated with higher IP-10 levels; IL-10 correlated with CRP and pro-inflammatory cytokines.
Conclusions:
- Cytokine concentrations correlate with AMI type (STEMI/non-STEMI) and IRA blood flow.
- Inflammatory response, endothelial function, and clot formation are interconnected.
- These combined parameters influence IRA patency in AMI patients.
Background:
The level of systemic inflammation correlates with the severity of the clinical course of acute myocardial infarction (AMI). It has been shown that circulating cytokines and endothelial dysfunction play an important role in the process of clot formation. The aim of our study was to assess the concentration of various circulating cytokines, endothelial function and blood clotting in AMI patients depending on the blood flow through the infarction-related artery (IRA).
Methods:
We included 75 patients with AMI. 58 presented with ST-elevation myocardial infarction (STEMI) and 17 had non-ST-elevation myocardial infarction (non-STEMI). A flow-mediated dilation test (FMD test), thrombodynamics and rotational thromboelastometry as well as assessment of 14 serum cytokines using xMAP technology were performed.
Findings:
Non-STEMI-patients were characterized by higher levels of MDC, MIP-1β, TNF-α. Moreover, we observed that patients with impaired blood flow through the IRA (TIMI flow 0-1) had higher average and initial clot growth rates, earlier onset of spontaneous clots, C-reactive protein (CRP) and IL-10 compared to patients with preserved blood flow through the IRA (TIMI flow 2-3). Patients with TIMI 2-3 blood flow had higher level of IP-10. IL-10 correlated with CRP and pro-inflammatory cytokines levels, initial clot growth rate and clot lysis time in TIMI 0-1 patients. All these differences were statistically significant.
Interpretation:
We demonstrated that concentrations of the inflammatory cytokines correlate not only with the form of myocardial infarction (STEMI or non-STEMI), but also with the blood flow through the infarct-related artery. Inflammatory response, functional state of endothelium, and clot formation are closely linked with each other. A combination of these parameters affects the patency of the infarct-related artery.
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