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Updated: Nov 7, 2025

Digital PCR for Quantifying Circulating MicroRNAs in Acute Myocardial Infarction and Cardiovascular Disease
Published on: July 3, 2018
Rapid fall in circulating non-classical monocytes in ST elevation myocardial infarction patients correlates with
Sarah A Marsh1, Catherine Park2, Rachael E Redgrave1
1Biosciences Institute, Centre for Life, Newcastle University, Newcastle, UK.
Insights
Following reperfusion in ST-elevation myocardial infarction (STEMI), circulating non-classical (NC) monocytes rapidly decrease, correlating with infarct size and impaired left ventricular function. This depletion involves monocyte margination to coronary vasculature, indicating a key early immune response to cardiac injury.
Area of Science:
- Immunology
- Cardiology
- Cell Biology
Background:
- Myocardial infarction triggers an innate immune response crucial for cardiac tissue repair.
- Understanding early immune cell dynamics post-reperfusion is vital for assessing cardiac injury severity.
Purpose of the Study:
- To investigate circulating monocyte dynamics immediately after coronary reperfusion in ST-elevation myocardial infarction (STEMI) patients.
- To correlate monocyte changes with the extent of cardiac injury and left ventricular function.
- To elucidate the mechanism of monocyte depletion using a mouse model.
Main Methods:
- Retrospective analysis of blood samples from 51 STEMI patients post-percutaneous coronary intervention, quantifying monocyte subsets (non-classical, classical, intermediate).
- Prospective validation in 13 STEMI patients.
- Assessment of monocyte margination in a mouse model of cardiac ischemia/reperfusion injury.
Main Results:
- Circulating non-classical (NC) monocyte numbers decreased by approximately 50% at 90 minutes post-reperfusion.
- The decrease in NC monocytes was significantly greater in patients with larger infarct sizes.
- Reduced NC monocyte levels correlated inversely with left ventricular function.
- Significant monocyte adhesion to coronary endothelium was observed in the mouse model post-reperfusion.
Conclusions:
- Rapid depletion of circulating NC monocytes post-reperfusion in STEMI patients is associated with the severity of acute cardiac injury.
- This depletion is linked to rapid monocyte margination to the coronary vasculature.
- NC monocyte dynamics serve as an early indicator of cardiac injury extent following reperfusion therapy.
Abstract:
Myocardial infarction leads to a rapid innate immune response that is ultimately required for repair of damaged heart tissue. We therefore examined circulating monocyte dynamics immediately after reperfusion of the culprit coronary vessel in STEMI patients to determine whether this correlated with level of cardiac injury. A mouse model of cardiac ischemia/reperfusion injury was subsequently used to establish the degree of monocyte margination to the coronary vasculature that could potentially contribute to the drop in circulating monocytes. We retrospectively analyzed blood samples from 51 STEMI patients to assess the number of non-classical (NC), classical, and intermediate monocytes immediately following primary percutaneous coronary intervention. Classical and intermediate monocytes showed minimal change. On the other hand, circulating numbers of NC monocytes fell by approximately 50% at 90 minutes post-reperfusion. This rapid decrease in NC monocytes was greatest in patients with the largest infarct size (P < .05) and correlated inversely with left ventricular function (r = 0.41, P = .04). The early fall in NC monocytes post-reperfusion was confirmed in a second prospective study of 13 STEMI patients. Furthermore, in a mouse cardiac ischemia model, there was significant monocyte adhesion to coronary vessel endothelium at 2 hours post-reperfusion pointing to a specific and rapid vessel margination response to cardiac injury. In conclusion, rapid depletion of NC monocytes from the circulation in STEMI patients following coronary artery reperfusion correlates with the level of acute cardiac injury and involves rapid margination to the coronary vasculature.
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