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Browsing by Author "Richmond, Marc E."
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Item Design and Rationale of the Fontan Udenafil Exercise Longitudinal (FUEL) Trial(Elsevier, 2018) Goldberg, David J.; Zak, Victor; Goldstein, Bryan H.; McCrindle, Brian W.; Menon, Shaji C.; Schumacher, Kurt R.; Payne, R. Mark; Rhodes, Jonathan; McHugh, Kimberly E.; Penny, Daniel J.; Trachtenberg, Felicia; Hamstra, Michelle S.; Richmond, Marc E.; Frommelt, Peter C.; Files, Matthew D.; Yeager, James L.; Pemberton, Victoria L.; Stylianou, Mario P.; Pearson, Gail D.; Paridon, Stephen M.; Pediatrics, School of MedicineThe Fontan operation creates a circulation characterized by elevated central venous pressure and low cardiac output. Over time, these characteristics result in a predictable and persistent decline in exercise performance that is associated with an increase in morbidity and mortality. A medical therapy that targets the abnormalities of the Fontan circulation might, therefore, be associated with improved outcomes. Udenafil, a phosphodiesterase type 5 inhibitor, has undergone phase I/II testing in adolescents who have had the Fontan operation and has been shown to be safe and well tolerated in the short-term. However, there are no data regarding the long-term efficacy of udenafil in this population. The Fontan Udenafil Exercise Longitudinal (FUEL) Trial is a randomized, double blind, placebo controlled phase III clinical trial being conducted by the Pediatric Heart Network in collaboration with Mezzion Pharma Co., Ltd. This trial is designed to test the hypothesis that treatment with udenafil will lead to an improvement in exercise capacity in adolescents who have undergone the Fontan operation. A safety extension trial, the FUEL Open-Label Extension Trial (FUEL OLE), offers the opportunity for all FUEL subjects to obtain open-label udenafil for an additional 12 months following completion of FUEL, and evaluates the long-term safety and tolerability of this medication. This manuscript describes the rationale and study design for FUEL and FUEL OLE. Together, these trials provide an opportunity to better understand the role of medical management in the care of those who have undergone the Fontan operation.Item Infectious Complications of Ventricular Assist Device Use in Children in the US: Data from the Pediatric Interagency Registry for Mechanical Circulatory Support (Pedimacs)(Elsevier, 2017) Auerbach, Scott R.; Richmond, Marc E.; Schumacher, Kurt R.; Lopez-Colon, Dalia; Mitchell, Max B.; Turrentine, M. W.; Cantor, Ryan S.; Niebler, Robert A.; Eghtesady, Pirooz; Surgery, School of MedicineBackground Infections are frequent in pediatric ventricular assist device (VAD) patients. In this study we aimed to describe infections in durable VAD patients reported to Pedimacs. Methods Durable VAD data from the Pedimacs registry (September 19, 2012 to December 31, 2015) were analyzed. Infections were described with standard descriptive statistics, Kaplan–Meier analysis and competing outcomes analysis. Results There were 248 implants in 222 patients, with a mean age and a median follow-up of 11 ± 6.4 years and 2.4 patient-months (<1 day to 2.6 years), respectively. Device types were pulsatile flow (PF) in 91 (41%) patients and continuous flow (CF) in 131 (59%) patients. PF patients were younger (4 ± 4 vs 14 ± 4 years; p < 0.0001) and were more likely to have congenital heart disease (25% vs 12%; p = 0.03), prior surgery (53% vs 26%; p < 0.0001) and prior extracorporeal membrane oxygenation (24% vs 7%; p = 0.0003). Infection accounted for 17% (96 of 564) of the reported adverse events (AEs). A non-device infection was most common (51%), followed by sepsis (24%), external pump component infection (20%) and internal pump component infection (5%). Most infections were bacterial (73%) and required intravenous therapy only (77%). The risk of infection in the constant phase was higher in patients with a history of prior infection and in patients with a history of a non-infectious major AEs. Survival was lower after infection only in CF patients (p = 0.008). Conclusions Infection was the most common AE after pediatric VAD implantation. Non-device infections were most common. The best predictor of a future infection was a past infection. CF patients have higher risk of death after an infection.Item Results of the Fontan Udenafil Exercise Longitudinal (FUEL) Trial(American Heart Association, 2020-02-25) Goldberg, David J.; Zak, Victor; Goldstein, Bryan H.; Schumacher, Kurt R.; Rhodes, Jonathan; Penny, Daniel J.; Petit, Christopher J.; Ginde, Salil; Menon, Shaji C.; Kim, Seong-Ho; Kim, Gi Beom; Nowlen, Todd T.; DiMaria, Michael V.; Frischhertz, Benjamin P.; Wagner, Jonathan B.; McHugh, Kimberly E.; McCrindle, Brian W.; Shillingford, Amanda J.; Sabati, Arash A.; Yetman, Anji T.; John, Anitha S.; Richmond, Marc E.; Files, Matthew D.; Payne, R. Mark; Mackie, Andrew S.; Davis, Christopher K.; Shahanavaz, Shabana; Hill, Kevin D.; Garg, Ruchira; Jacobs, Jeffrey P.; Hamstra, Michelle S.; Woyciechowski, Stacy; Rathge, Kathleen A.; McBride, Michael G.; Frommelt, Peter C.; Russell, Mark W.; Urbina, Elaine M.; Yeager, James L.; Pemberton, Victoria L.; Stylianou, Mario P.; Pearson, Gail D.; Paridon, Stephen M.; Pediatrics, School of MedicineBackground: The Fontan operation creates a total cavopulmonary connection, a circulation in which the importance of pulmonary vascular resistance is magnified. Over time, this circulation leads to deterioration of cardiovascular efficiency associated with a decline in exercise performance. Rigorous clinical trials aimed at improving physiology and guiding pharmacotherapy are lacking. Methods: The FUEL trial (Fontan Udenafil Exercise Longitudinal) was a phase III clinical trial conducted at 30 centers. Participants were randomly assigned udenafil, 87.5 mg twice daily, or placebo in a 1:1 ratio. The primary outcome was the between-group difference in change in oxygen consumption at peak exercise. Secondary outcomes included between-group differences in changes in submaximal exercise at the ventilatory anaerobic threshold, the myocardial performance index, the natural log of the reactive hyperemia index, and serum brain-type natriuretic peptide. Results: Between 2017 and 2019, 30 clinical sites in North America and the Republic of Korea randomly assigned 400 participants with Fontan physiology. The mean age at randomization was 15.5±2 years; 60% of participants were male, and 81% were white. All 400 participants were included in the primary analysis with imputation of the 26-week end point for 21 participants with missing data (11 randomly assigned to udenafil and 10 to placebo). Among randomly assigned participants, peak oxygen consumption increased by 44±245 mL/min (2.8%) in the udenafil group and declined by 3.7±228 mL/min (-0.2%) in the placebo group (P=0.071). Analysis at ventilatory anaerobic threshold demonstrated improvements in the udenafil group versus the placebo group in oxygen consumption (+33±185 [3.2%] versus -9±193 [-0.9%] mL/min, P=0.012), ventilatory equivalents of carbon dioxide (-0.8 versus -0.06, P=0.014), and work rate (+3.8 versus +0.34 W, P=0.021). There was no difference in change of myocardial performance index, the natural log of the reactive hyperemia index, or serum brain-type natriuretic peptide level. Conclusions: In the FUEL trial, treatment with udenafil (87.5 mg twice daily) was not associated with an improvement in oxygen consumption at peak exercise but was associated with improvements in multiple measures of exercise performance at the ventilatory anaerobic threshold.