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The natural history of classic galactosemia: Lessons from the GalNet registry

  • M. E. Rubio-Gozalbo
  • , M. Haskovic
  • , A. M. Bosch
  • , B. Burnyte
  • , A. I. Coelho
  • , D. Cassiman
  • , M. L. Couce
  • , C. Dawson
  • , D. Demirbas
  • , T. Derks
  • , F. Eyskens
  • , M. T. Forga
  • , S. Grunewald
  • , J. Häberle
  • , M. Hochuli
  • , A. Hubert
  • , H. H. Huidekoper
  • , P. Janeiro
  • , J. Kotzka
  • , I. Knerr
  • P. Labrune, Y. E. Landau, J. G. Langendonk, D. Möslinger, D. Müller-Wieland, E. Murphy, K. Õunap, D. Ramadza, I. A. Rivera, S. Scholl-Buergi, K. M. Stepien, A. Thijs, C. Tran, R. Vara, G. Visser, R. Vos, M. de Vries, S. E. Waisbren, M. M. Welsink-Karssies, S. B. Wortmann, M. Gautschi, E. P. Treacy, G. T. Berry
  • Department of Pediatrics and Clinical Genetics, 6202 AZ Maastricht, Netherlands
  • Amsterdam UMC, Amsterdam, Netherlands
  • Institute of Biomedical Sciences of the Faculty of Medicine of Vilnius University, Vilnius, Lithuania
  • Metabolic Center, Leuven, Belgium
  • Unit of Diagnosis and Treatment of Congenital Metabolic Diseases, Santiago de Compostela, Spain
  • Department of Endocrinology, London, United Kingdom
  • Manton Center for Orphan Disease Research, Boston, United States
  • Section of Metabolic Diseases, Groningen, Netherlands
  • Antwerp University Hospital, Antwerp, Belgium
  • Hospital Clinic Barcelona, Barcelona, Spain
  • Metabolic Medicine Department, London, United Kingdom
  • Division of Metabolism and Children's Research Center, Zurich, Switzerland
  • Department of Endocrinology, Zurich, Switzerland
  • APHP, Clamart, France
  • Université Paris Sud-Paris Saclay, 1195 Paris, France
  • Department of Pediatrics, Rotterdam, Netherlands
  • Department of Pediatrics, Lisbon, Portugal
  • Institute for Clinical Biochemistry and Pathobiochemistry, Düsseldorf, Germany
  • National Centre for Inherited Metabolic Disorders, I-Dublin, Ireland
  • Metabolic Disease Unit, Tel Aviv, Israel
  • Department of Internal Medicine, Rotterdam, Netherlands
  • Department for Pediatrics and Adolescent Medicine, Vienna, Austria
  • Clinical Research Center, Aachen, Germany
  • Charles Dent Metabolic Unit, London, United Kingdom
  • Department of Clinical Genetics, Tartu, Estonia
  • Department of Pediatrics, Zagreb, Croatia
  • Research Institute for Medicines (IMed.ULisboa), Lisbon, Portugal
  • Universitätsklink für Pädiatrie, Innsbruck, Austria
  • Mark Holland Metabolic Unit, M6 8HD Salford, United Kingdom
  • Vrije Universiteit Amsterdam
  • Center for Molecular Diseases, Lausanne, Switzerland
  • Department of Paediatric Inherited Metabolic Disease, London, United Kingdom
  • Department of Pediatrics, Utrecht, Netherlands
  • Department of Methodology and Statistics, Maastricht, Netherlands
  • Department of Pediatrics, Nijmegen, Netherlands
  • Department of Pediatrics, Boston, United States
  • University Children's Hospital, Salzburg, Austria
  • Department of Pediatrics, Bern, Switzerland
  • National Centre for Inherited Metabolic Disorders, I-Dublin-7, Ireland

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

Background: Classic galactosemia is a rare inborn error of carbohydrate metabolism, caused by a severe deficiency of the enzyme galactose-1-phosphate uridylyltransferase (GALT). A galactose-restricted diet has proven to be very effective to treat the neonatal life-threatening manifestations and has been the cornerstone of treatment for this severe disease. However, burdensome complications occur despite a lifelong diet. For rare diseases, a patient disease specific registry is fundamental to monitor the lifespan pathology and to evaluate the safety and efficacy of potential therapies. In 2014, the international Galactosemias Network (GalNet) developed a web-based patient registry for this disease, the GalNet Registry. The aim was to delineate the natural history of classic galactosemia based on a large dataset of patients. Methods: Observational data derived from 15 countries and 32 centers including 509 patients were acquired between December 2014 and July 2018. Results: Most affected patients experienced neonatal manifestations (79.8%) and despite following a diet developed brain impairments (85.0%), primary ovarian insufficiency (79.7%) and a diminished bone mineral density (26.5%). Newborn screening, age at onset of dietary treatment, strictness of the galactose-restricted diet, p.Gln188Arg mutation and GALT enzyme activity influenced the clinical picture. Detection by newborn screening and commencement of diet in the first week of life were associated with a more favorable outcome. A homozygous p.Gln188Arg mutation, GALT enzyme activity of ≤ 1% and strict galactose restriction were associated with a less favorable outcome. Conclusion: This study describes the natural history of classic galactosemia based on the hitherto largest data set.
Original languageEnglish
Article number86
JournalOrphanet journal of rare diseases
Volume14
Issue number1
DOIs
Publication statusPublished - 27 Apr 2019

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