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Following the arterial switch operation, obese children have risk factors for early cardiovascular disease
Sara K Pasquali1, Bradley S Marino, Darryl J Powell
1Division of Cardiology, Department of Pediatrics, The Children's Hospital of Philadelphia, Philadelphia, PA, USA. pasqualisk@gmail.com
Insights
Obese children who had arterial switch operation (ASO) show increased early cardiovascular disease markers and comorbidities. These findings highlight potential risks for future events in this ASO patient group.
Area of Science:
- Pediatric Cardiology
- Cardiovascular Disease Research
- Obesity and Health
Background:
- Children undergoing arterial switch operation (ASO) face risks of premature coronary artery disease due to coronary re-implantation.
- Obesity is an independent risk factor for cardiovascular disease.
Purpose of the Study:
- To evaluate comorbidities and early cardiovascular disease markers in obese pediatric patients post-arterial switch operation (ASO).
Main Methods:
- Prospective study comparing obese ASO patients, normal weight ASO patients, and normal weight controls.
- Utilized vascular, echocardiographic, laboratory, exercise, and ambulatory blood pressure (BP) testing.
- Defined BP load as the proportion of recordings exceeding the 95th percentile.
Main Results:
- Obese ASO patients exhibited higher systolic BP%, night-time diastolic BP load, and left ventricular mass index compared to controls.
- Lower brachial artery reactivity was observed in obese ASO patients.
- Trends towards increased carotid intima-media thickness, higher triglycerides, and lower HDL levels were noted in obese ASO patients.
Conclusions:
- Obese patients post-ASO present with comorbidities and early cardiovascular disease markers.
- These factors may increase the risk of future cardiovascular events in this specific population.
- Early identification and management of cardiovascular risks in obese ASO patients are crucial.
Background:
Children who have undergone the arterial switch operation (ASO) are at risk for premature coronary artery disease due to coronary re-implantation. Obesity may also pose cardiovascular risk. The purpose of this study was to evaluate comorbidities and markers of early cardiovascular disease in obese ASO patients.
Methods:
Obese [body mass index (BMI) >or= 95th %] and normal weight (NW, BMI < 85th %) ASO patients, and NW controls without heart disease were enrolled, and underwent prospective vascular, echocardiographic, laboratory, exercise, and ambulatory blood pressure (BP) testing. Results were compared between groups. BP load was defined as proportion of recordings >or= 95th %.
Results:
Thirty patients [13.2 years (11.2-16.8), 57% male] were evaluated: 10 obese ASO, 10 NW ASO, and 10 NW controls. Obese ASO patients, in comparison to NW ASO and controls, had higher systolic BP% [96% (90-99) vs. 67% (30-91) P= 0.07 (trend) and 34% (21-43) P= 0.005], night-time diastolic BP load [18% (14-24) vs. 0% (0-0) P= 0.01 and 0% (0-0) P= 0.01], left ventricular mass index [51.7 g/m(2.7) (46.6-53.3) vs. 40.7 g/m(2.7) (29.2-41.6) P < 0.01 and 28.9 g/m(2.7) (27.3-33.7) P < 0.01], and lower brachial artery reactivity [8.7% (6.2-11.9) vs. 14.6% (10.8-23.0) P= 0.03, and 16.7% (12.8-17.8) P= 0.05]. There was a trend toward increased carotid intima-media thickness, and significantly higher triglyceride and lower high-density lipoprotein levels in obese ASO patients.
Conclusions:
Following the ASO, obese patients have associated comorbidities, and markers of early cardiovascular disease. These may pose additional risk for future cardiovascular events in this unique population who underwent coronary artery re-implantation in infancy.
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