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Methylated Arginine Metabolites as Biomarkers for Clinical Status and Response to Type 5 Phosphodiesterase Inhibition in Patients With Fontan Circulation

  • Ari Cedars
  • , Cedric Manlhiot
  • , Bhargava Kumar Chinni
  • , Alexander R Opotowsky
  • , Kristian Becker
  • , Anne Le
  • , Pratik Khare
  • , Jong Love Ko
  • , Allen Everett
  • , Shelby Kutty
  • , Mark W Russell
  • , R Mark Payne
  • , Andrew M Atz
  • , Brian W McCrindle
  • , Rahul H Rathod
  • , Matthew Lewis
  • , David Goldberg
  • , Kevin Hill
  • , Michelle Ploutz
  • , Jon Detterich
  • Kurt Schumacher, Robert Whitehill, Daniel J Penny, Mark Cartoski, Rachel Sullivan, Matthew Files, Ruchira Garg, Jonathan Wagner, Roni Jacobsen, Todd Nowlen, Scott Fletcher, Jennifer Conway, Gi Boem Kim, Fred Wu, Victor Zak
  • Johns Hopkins University
  • Cincinnati Children's Hospital
  • Gigantest Inc.
  • C.S. Mott Children's Hospital
  • Riley Children's Hospital
  • Medical University of South Carolina
  • University of Toronto
  • Boston Children's Hospital
  • Columbia University
  • The Children's Hospital of Philadelphia
  • Duke University Medical Center
  • University of Utah
  • Children's Hospital Los Angeles
  • Children's Healthcare of Atlanta
  • Texas Children's Hospital
  • Monroe Carrell Jr. Children's Hospital
  • Seattle Children's
  • Cedars-Sinai Medical Center
  • Children's Mercy
  • Children's Hospital of Colorado
  • Phoenix Children's Hospital
  • Children's Nebraska
  • Stollery Children's Hospital
  • Seoul National University Hospital
  • Carelon Research

Producción científicarevisión exhaustiva

1 Cita (Scopus)

Resumen

BACKGROUND: There is significant interest in NO pathway modulators, specifically type 5 phosphodiesterase inhibitors (PDE5is), to treat patients with a Fontan circulation. Trials, however, have had mixed results. The relationship between the NO pathway and clinical status in patients with Fontan circulation is a significant knowledge gap.

METHODS AND RESULTS: We performed targeted metabolomic analysis using liquid chromatography coupled to mass spectrometry to quantify plasma NO pathway metabolite concentrations from 2 well-characterized populations of patients with Fontan circulation: the Boston Adult Congenital Heart Disease Biobank and Fontan Udenafil Exercise Longitudinal studies. We investigated associations between NO metabolite concentrations and clinical outcomes, exercise capacity, and response to PDE5is. Increased plasma concentration of asymmetric dimethyl arginine (ADMA), an inhibitor of NO production, was associated with risk for hospitalization or death. Increased ADMA and symmetric dimethyl arginine (another inhibitor of NO production) concentrations were associated with decreased baseline exercise capacity among patients with Fontan circulation with <90% predicted peak oxygen uptake, and change in ADMA and symmetric dimethyl arginine concentrations were predictive of change in exercise capacity over time. Treatment with the PDE5i udenafil uncoupled this association. Finally, baseline ADMA and symmetric dimethyl arginine concentrations predicted response to PDE5is among patients with subnormal peak oxygen uptake.

CONCLUSIONS: Plasma concentrations of metabolites that inhibit NO flux are associated with negative clinical outcomes and worse exercise capacity. Moreover, metabolite shifts over time associated with increased NO flux are associated with improved exercise capacity. In patients with a Fontan circulation, the NO pathway modulators ADMA and symmetric dimethyl arginine may be useful as biomarkers of clinical status and predictive of response to PDE5is.

Idioma originalEnglish
Número de artículoe038061
Páginas (desde-hasta)e038061
PublicaciónJournal of the American Heart Association
Volumen14
N.º7
Fecha en línea anticipada26 mar 2025
DOI
EstadoPublished - abr 2025

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