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Myocardial ischaemia following COVID-19: a cardiovascular magnetic resonance study
J Ranjit Arnold1, Jian L Yeo2, Charley A Budgeon2,3
1University of Leicester and The NIHR Leicester Biomedical Research Centre, Glenfield Hospital, Leicester, UK. jra14@le.ac.uk.
Insights
Myocardial ischemia occurred in about 20% of COVID-19 patients with elevated troponin, similar to controls. This suggests coronary artery issues are not the main cause of COVID-19 related heart injury.
Area of Science:
- Cardiology
- Infectious Diseases
- Medical Imaging
Background:
- The exact cause of myocardial injury in COVID-19 patients is not fully understood.
- Cardiovascular magnetic resonance (CMR) is a key imaging technique for assessing heart health.
- Elevated cardiac troponin levels in COVID-19 patients indicate potential heart damage.
Purpose of the Study:
- To determine the frequency of myocardial ischemia in COVID-19 patients with elevated troponin.
- To investigate the relationship between myocardial ischemia and myocardial injury in these patients.
- To explore potential mechanisms of COVID-19 related myocardial injury.
Main Methods:
- Prospective, multicentre COVID-HEART study.
- Multi-parametric CMR including ventricular volumes, stress perfusion, and T1/T2 mapping.
- Comparison between 59 COVID-19 patients (COVID+/troponin+) and 37 matched controls (COVID-/comorbidity+).
Main Results:
- Inducible myocardial ischemia was found in 19% of COVID-19 patients and 22% of controls (p=0.72).
- In COVID-19 patients, ischemia patterns included epicardial coronary disease (8 patients) and microvascular disease (3 patients).
- No significant difference in ischemia frequency was observed based on prior myocardial infarction, revascularization, or myocardial scar.
Conclusions:
- Myocardial ischemia is present in approximately 20% of hospitalized COVID-19 patients with elevated troponin, at a rate similar to matched controls.
- The lack of association between ischemia and myocardial scar suggests coronary artery abnormalities are not the primary driver of COVID-19-induced myocardial injury.
- Further research is needed to fully elucidate the pathophysiology of COVID-19 related myocardial injury.
Abstract:
The pathophysiology of myocardial injury following COVID-19 remains uncertain. COVID-HEART was a prospective, multicentre study utilising cardiovascular magnetic resonance (CMR) to characterise COVID-related myocardial injury. In this pre-specified analysis, the objectives were to examine (1) the frequency of myocardial ischaemia following COVID-19, and (2) the association between ischaemia and myocardial injury. We studied 59 patients hospitalised with COVID-19 and elevated serum troponin (COVID + /troponin + , age 61 ± 11 years) and 37 control subjects without COVID-19 or elevated troponin and similar by age and cardiovascular comorbidities (COVID -/comorbidity + , 64 ± 10 years). Subjects underwent multi-parametric CMR (comprising assessment of ventricular volumes, stress perfusion, T1/T2 mapping and scar). The primary endpoint was the frequency of inducible myocardial ischaemia. Inducible ischaemia was evident in 11 (19%) COVID + /troponin + patients and in 8 (22%) control subjects (p = 0.72). In COVID + /troponin + patients with ischaemia, epicardial coronary disease pattern ischaemia was present in eight patients and microvascular disease pattern, in three patients. There was no significant difference in the frequency of inducible ischaemia in COVID + /troponin + patients with previous myocardial infarction and/or revascularisation compared to those without (2/12 [17%] vs. 9/47 [19%] respectively, p = 0.84), or in those with and without scar (7/27 [26%] vs. 4/32 [13%] respectively, p = 0.19). Myocardial ischaemia was present in ~ 20% of patients recently hospitalised with COVID-19 and with elevated cardiac troponin, but this was not different to matched comorbid controls. This finding coupled with the lack of an association between ischaemia and myocardial scar suggests that coronary artery abnormalities are unlikely to be the predominant mechanism underlying COVID-19 induced myocardial injury.
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