A multi-site coronary sampling study on CRP in non-STEMI: Novel insights into the inflammatory process in acute
Sander A J Damen1, Gilbert E Cramer1, Hendrik-Jan Dieker1
1Department of Cardiology, Radboud University Medical Center, Geert Grooteplein Zuid 10, 6525 GA, Nijmegen, the Netherlands.
Insights
This study shows a decrease in C-reactive protein (CRP) levels in the heart during non-ST elevation myocardial infarction (NSTEMI). This suggests the heart muscle takes up CRP, highlighting its role in cardiac inflammation.
Area of Science:
- Cardiovascular Medicine
- Biomarker Research
- Inflammation Studies
Background:
- Inflammation is central to cardiovascular disease, with novel anti-inflammatory therapies showing promise.
- Human studies on C-reactive protein (CRP) release, production, and uptake in cardiovascular disease are limited, despite extensive in vitro and animal research.
Purpose of the Study:
- To investigate CRP gradients in the coronary circulation of patients with non-ST elevation myocardial infarction (NSTEMI).
- To explore the in vivo human evidence for myocardial uptake of CRP.
Main Methods:
- A biomarker study involving multi-site blood sampling in the coronary circulation of NSTEMI patients undergoing coronary angiography and right-sided catheterization.
- Measurement of CRP concentrations using a high-sensitivity assay in systemic arterial, coronary sinus, and coronary vein blood samples.
Main Results:
- No significant trans-lesional CRP gradient was observed in 14 patients.
- A significant decrease in CRP concentration was found between systemic arterial and coronary sinus samples (4.88 mg/L vs. 4.44 mg/L, p < 0.001) in 42 patients.
- This trans-cardiac CRP gradient was independent of infarct size and lesion location, and influenced by uptake in both injured and non-infarcted myocardium.
Conclusions:
- A trans-cardiac decrease in CRP was observed in NSTEMI patients.
- This finding provides the first in vivo human evidence for net myocardial CRP uptake.
- CRP plays a role in both injured and adjacent myocardium during NSTEMI.
Background And Aims:
Inflammation has become a key element in cardiovascular disease, and recently, new anti-inflammatory interventions have shown promising results. In this context, CRP levels have been thoroughly studied in vitro and in animals, but studies in humans are scarce and insights into its release, site(s) of production and uptake are not uniform.
Methods:
We performed a biomarker study with multi-site sampling in the coronary circulation, in non-ST elevation MI (NSTEMI) patients with coronary angiography and right-sided catheterisation. Trans-lesional gradients were obtained by sampling distal to the culprit lesion, in patients with a suitable anatomy. To asses trans-cardiac gradients, blood was sampled from the systemic circulation, coronary sinus (CS) and great cardiac vein. Concentrations of CRP were measured with a high-sensitivity assay.
Results:
In 42 patients, a median systemic venous CRP concentration of 4.97 mg/L was observed. There was no evidence of a trans-lesional gradient (4.59 mg/L versus 4.56 mg/L, p = 0.278; n = 14). A significant decrease in CRP concentration was observed between systemic arterial and CS samples (4.88 mg/L versus 4.44 mg/L; p < 0.001; n = 42). This trans-cardiac gradient was irrespective of time of presentation, infarct size and culprit lesion location. The gradient was not only driven by blood that ran through the injured myocardium, but also by lower CRP concentrations in the coronary veins that drain non-infarcted myocardium.
Conclusions:
In the context of NSTEMI, we observed a trans-cardiac decrease in CRP, which may indicate the first human in vivo proof of a net CRP uptake by the myocardium, with a role for CRP both in the injured and adjacent myocardium.
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