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Updated: Jun 8, 2026

Myocardial Infarction and Functional Outcome Assessment in Pigs
Published on: April 25, 2014
New universal definition of myocardial infarction applicable after complex percutaneous coronary interventions?
Didier Locca1, Chiara Bucciarelli-Ducci, Giuseppe Ferrante
1CMR Unit, Royal Brompton Hospital, London; Imperial College, London, UK. c.dimario@rbht.nhs.uk
Insights
The universal definition for myocardial infarction after percutaneous coronary intervention (PCI) showed poor agreement with cardiovascular magnetic resonance (CMR) findings. Baseline inflammatory markers like C-reactive protein (CRP) and neopterin did not predict periprocedural myocardial injury.
Area of Science:
- Cardiology
- Medical Imaging
- Biomarkers
Background:
- Cardiovascular magnetic resonance (CMR) is accurate for assessing myocardial infarct size.
- Baseline C-reactive protein (CRP) and neopterin levels can predict prognosis following stent implantation.
Purpose of the Study:
- To characterize myocardial infarction (MI) post-percutaneous coronary intervention (PCI) using cardiac marker elevation and CMR-detected late gadolinium enhancement (LGE).
- To evaluate if baseline inflammatory biomarkers predict myocardial injury after PCI.
Main Methods:
- Consecutive patients with normal baseline troponin I (Tn-I) and no LGE underwent baseline and post-PCI CMR.
- Tn-I levels were measured up to 24 hours post-PCI.
- Serum high-sensitivity CRP and neopterin were assessed before coronary angiography.
Main Results:
- 33% of patients developed LGE (infarct size 0.83 g).
- 58% had Tn-I elevation >99% ULR (myocardial necrosis), and 47% had Tn-I >3x ULR (type 4a MI).
- LGE was undetectable in 42-43% of patients with periprocedural necrosis or type 4a MI; agreement was moderate (kappa=0.45). CRP and neopterin levels did not differ significantly between groups.
Conclusions:
- There is a lack of substantial agreement between the universal definition and CMR for diagnosing small periprocedural myocardial damage after complex PCI.
- Baseline CRP or neopterin levels were not predictive of periprocedural myocardial damage.
Objectives:
This study aimed to characterize myocardial infarction after percutaneous coronary intervention (PCI) based on cardiac marker elevation as recommended by the new universal definition and on the detection of late gadolinium enhancement (LGE) by cardiovascular magnetic resonance (CMR). It is also assessed whether baseline inflammatory biomarkers are higher in patients developing myocardial injury.
Background:
Cardiovascular magnetic resonance accurately assesses infarct size. Baseline C-reactive protein (CRP) and neopterin predict prognosis after stent implantation.
Methods:
Consecutive patients with baseline troponin (Tn) I within normal limits and no LGE in the target vessel underwent baseline and post-PCI CMR. The Tn-I was measured until 24 h after PCI. Serum high-sensitivity CRP and neopterin were assessed before coronary angiography.
Results:
Of 45 patients, 64 (53 to 72) years of age, 33% developed LGE with infarct size of 0.83 g (interquartile range: 0.32 to 1.30 g). A Tn-I elevation >99% upper reference limit (i.e., myocardial necrosis) (median Tn-I: 0.51 μg/l, interquartile range: 0.16 to 1.23) and Tn-I > 3× upper reference limit (i.e., type 4a myocardial infarction [MI]) occurred in 58% and 47% patients, respectively. LGE was undetectable in 42% and 43% of patients with periprocedural myocardial necrosis and type 4a MI, respectively. Agreement between LGE and type 4a MI was moderate (kappa = 0.45). The levels of CRP or neopterin did not significantly differ between patients with or without myocardial injury, detected by CMR or according to the new definition (p = NS).
Conclusions:
This study reports the lack of substantial agreement between the new universal definition and CMR for the diagnosis of small-size periprocedural myocardial damage after complex PCI. Baseline levels of CRP or neopterin were not predictive for the development of periprocedural myocardial damage.
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