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A Pre-Clinical Porcine Model of Orthotopic Heart Transplantation
Published on: April 27, 2019
Diastolic Function Unchanged After Lifestyle Intervention Despite Improved VO2 in Pediatric Heart Transplant Patients
Andrew Brennan1, Christopher Mardy2, Rajesh Punn3
1Division of Pediatric Cardiology, Department of Pediatrics, Stanford University School of Medicine, Stanford, CA, USA. ambrenn@stanford.edu.
Insights
A supervised exercise and nutrition program improved exercise capacity in pediatric heart transplant patients but did not improve diastolic function markers on echocardiograms. Peripheral adaptations likely explain the functional gains, not cardiac changes.
Area of Science:
- Cardiology
- Pediatric Medicine
- Exercise Physiology
Background:
- Pediatric heart transplant recipients often have diastolic dysfunction, impacting exercise capacity.
- Previous studies showed exercise and nutrition interventions improve exercise performance and endothelial function in this population.
Purpose of the Study:
- To investigate if a supervised exercise and nutrition intervention improves resting echocardiographic markers of diastolic function in pediatric heart transplant recipients.
- To assess changes in conventional diastolic function parameters and atrial strain.
Main Methods:
- Retrospective review of echocardiograms from 14 pediatric heart transplant patients (aged 8-19) before, after intervention, and post-maintenance.
- Intervention included 12-16 weeks of supervised exercise and nutrition, followed by maintenance.
- Diastolic dysfunction defined by specific echocardiographic criteria (E/A ratio, deceleration time, E/e', TRV).
Main Results:
- No significant improvements in diastolic function parameters or atrial strain were observed post-intervention compared to baseline.
- Nine patients with baseline diastolic dysfunction showed no significant changes.
- A strong inverse correlation was found between changes in E/A ratio and peak VO2 in patients with baseline diastolic dysfunction.
Conclusions:
- Exercise and nutrition interventions improve exercise capacity and endothelial function in pediatric heart transplant recipients.
- These functional improvements may stem from peripheral adaptations rather than direct cardiac improvements in diastolic function.
- Echocardiographic markers of diastolic function did not significantly change despite improved exercise capacity.
Abstract:
Pediatric heart transplant recipients commonly exhibit diastolic dysfunction, which may contribute to reduced exercise capacity. In our Healthy Hearts study, a supervised exercise and nutrition intervention improved exercise performance and endothelial function. We hypothesized that this intervention would also improve resting echocardiographic markers of diastolic function in this cohort. Fourteen stable heart transplant patients aged 8 to 19 years, at least one year post-transplant, participated in a live-video-supervised exercise and nutrition intervention from 2014 to 2018. Participants completed a 12-16-week intervention, followed by a maintenance phase of similar duration with mostly self-directed sessions. Echocardiograms taken near baseline, post-intervention, and post-maintenance visits were reviewed retrospectively. Diastolic dysfunction at baseline was defined by any of the following: E/A ratio > 2, mitral deceleration time < 160 ms, septal or lateral E/e' > 14, or tricuspid regurgitant jet velocity > 2.8 m/s. Atrial strain was measured using TOMTEC software. No significant improvements from baseline to post-intervention were observed in conventional diastolic function parameters or atrial strain, including patients with baseline diastolic dysfunction (n = 9). Among those with baseline diastolic dysfunction, there was a strong inverse correlation between the change in E/A ratio and the change in peak VO2 from baseline to post-intervention (r = - 0.94). Despite improvements in exercise capacity and endothelial function following a nutrition and exercise intervention in pediatric heart transplant patients, echocardiographic markers of diastolic function remained unchanged. These findings suggest that peripheral rather than cardiac adaptations may underlie the observed functional improvements.
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