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Cardiovascular Magnetic Resonance Imaging Phenotypes and Long-term Outcomes in Patients With Suspected Cardiac
Pal Satyajit Singh Athwal1, Sanya Chhikara1, Mohamed F Ismail1
1Cardiovascular Division, Department of Medicine, University of Minnesota Medical School, Minneapolis.
Insights
Cardiac sarcoidosis patients with pathology-frequent late gadolinium enhancement (LGE) on cardiovascular magnetic resonance imaging (CMR) face high risks of arrhythmias and heart failure. Identifying these CMR phenotypes can guide treatment decisions for better patient outcomes.
Area of Science:
- Cardiology
- Radiology
- Immunology
Background:
- Cardiac sarcoidosis (CS) diagnosis relies on identifying myocardial involvement.
- Late gadolinium enhancement (LGE) on cardiovascular magnetic resonance imaging (CMR) indicates cardiac damage in CS patients.
- However, not all patients with LGE experience adverse outcomes, necessitating better risk stratification.
Purpose of the Study:
- To evaluate CMR phenotypes, combining left ventricular ejection fraction (LVEF) and LGE patterns, for predicting adverse outcomes in suspected CS.
- To determine if specific LGE characteristics correlate with increased risk of ventricular arrhythmias and heart failure.
Main Methods:
- A cohort study of 504 patients with histologically proven sarcoidosis and suspected CS who underwent CMR between 2004 and 2020.
- Patients were categorized into four CMR phenotypes based on LVEF and LGE presence/features (pathology-frequent vs. pathology-rare).
- Outcomes assessed included composite ventricular arrhythmic events and heart failure events, with a median follow-up of 4.3 years.
Main Results:
- The phenotype with pathology-frequent LGE showed a significantly higher risk of arrhythmic events (HR, 12.12) and heart failure events (HR, 2.49), independent of other factors.
- Risk for arrhythmic events increased with more pathology-frequent LGE features.
- Absence of the pathology-frequent LGE phenotype was linked to a low risk of arrhythmias, even with LGE or abnormal LVEF.
Conclusions:
- A CMR phenotype characterized by pathology-frequent LGE features is a strong predictor of adverse arrhythmic and heart failure events in CS patients.
- These CMR-defined phenotypes can refine risk assessment and inform clinical decisions, potentially guiding the use of interventions like implantable cardioverter-defibrillators.
Importance:
In patients with sarcoidosis with suspected cardiac involvement, late gadolinium enhancement (LGE) on cardiovascular magnetic resonance imaging (CMR) identifies those with an increased risk of adverse outcomes. However, these outcomes are experienced by only a minority of patients with LGE, and identifying this subgroup may improve treatment and outcomes in these patients.
Objective:
To assess whether CMR phenotypes based on left ventricular ejection fraction (LVEF) and LGE in patients with suspected cardiac sarcoidosis (CS) are associated with adverse outcomes during follow-up.
Design, Setting, And Participants:
This cohort study included consecutive patients with histologically proven sarcoidosis who underwent CMR for the evaluation of suspected CS from 2004 to 2020 with a median follow-up of 4.3 years at an academic medical center in Minnesota. Demographic data, medical history, comorbidities, medications, and outcome data were collected blinded to CMR data.
Exposures:
CMR phenotypes were identified based on LVEF and LGE presence and features. LGE was classified as pathology-frequent or pathology-rare based on the frequency of cardiac damage features on gross pathology assessment of the hearts of patients with CS who had sudden cardiac death or cardiac transplant.
Main Outcomes And Measures:
Composite of ventricular arrhythmic events and composite of heart failure events.
Results:
Among 504 patients (mean [SD] age, 54.1 [12.5] years; 242 [48.0%] female and 262 [52.0%] male; 2 [0.4%] American Indian or Alaska Native, 6 [1.2%] Asian, 90 [17.9%] Black or African American, 399 [79.2%] White, 5 [1.0%] of 2 or more races (including the above-mentioned categories and Native Hawaiian or Other Pacific Islander), and 2 [0.4%] of unknown race; 4 [0.8%] Hispanic or Latino, 498 [98.8%] not Hispanic or Latino, and 2 [0.4%] of unknown ethnicity), 4 distinct CMR phenotypes were identified: normal LVEF and no LGE (n = 290; 57.5%), abnormal LVEF and no LGE (n = 53; 10.5%), pathology-frequent LGE (n = 103; 20.4%), and pathology-rare LGE (n = 58; 11.5%). The phenotype with pathology-frequent LGE was associated with a high risk of arrhythmic events (hazard ratio [HR], 12.12; 95% CI, 3.62-40.57; P < .001) independent of LVEF and extent of left ventricular late gadolinium enhancement (LVLGE). It was also associated with a high risk of heart failure events (HR, 2.49; 95% CI, 1.19-5.22; P = .02) independent of age, pulmonary hypertension, LVEF, right ventricular ejection fraction, and LVLGE extent. Risk of arrhythmic events was greater with an increasing number of pathology-frequent LGE features. The absence of the pathology-frequent LGE phenotype was associated with a low risk of arrhythmic events, even in the presence of LGE or abnormal LVEF.
Conclusions And Relevance:
This cohort study found that a CMR phenotype involving pathology-frequent LGE features was associated with a high risk of arrhythmic and heart failure events in patients with sarcoidosis. The findings indicate that CMR phenotypes could be used to optimize clinical decision-making for treatment options, such as implantable cardioverter-defibrillators.
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