Stefan Kölker1, Vassili Valayannopoulos2, Alberto B Burlina3, Jolanta Sykut-Cegielska4, Frits A Wijburg5, Elisa Leão Teles6, Jiri Zeman7, Carlo Dionisi-Vici8, Ivo Barić9, Daniela Karall10, Jean-Baptiste Arnoux2, Paula Avram11, Matthias R Baumgartner12, Javier Blasco-Alonso13, S P Nikolas Boy14, Marlene Bøgehus Rasmussen15, Peter Burgard14, Brigitte Chabrol16, Anupam Chakrapani17, Kimberly Chapman18, Elisenda Cortès I Saladelafont19, Maria L Couce20, Linda de Meirleir21, Dries Dobbelaere22, Francesca Furlan3, Florian Gleich14, Maria Julieta González19, Wanda Gradowska23, Stephanie Grünewald24, Tomas Honzik7, Friederike Hörster14, Hariklea Ioannou25, Anil Jalan26, Johannes Häberle12, Gisela Haege14, Eveline Langereis5, Pascale de Lonlay2, Diego Martinelli8, Shirou Matsumoto27, Chris Mühlhausen28, Elaine Murphy29, Hélène Ogier de Baulny30, Carlos Ortez19, Consuelo C Pedrón31, Guillem Pintos-Morell32, Luis Pena-Quintana33, Danijela Petković Ramadža33, Esmeralda Rodrigues6, Sabine Scholl-Bürgi10, Etienne Sokal34, Marshall L Summar18, Nicholas Thompson24, Roshni Vara35, Inmaculada Vives Pinera36, John H Walter37, Monique Williams38, Allan M Lund15, Angeles Garcia-Cazorla19, Angeles Garcia Cazorla. 1. Department of General Pediatrics, Division of Inherited Metabolic Diseases, University Children's Hospital Heidelberg, Im Neuenheimer Feld 430, 69120, Heidelberg, Germany. Stefan_Koelker@med.uni-heidelberg.de. 2. Hôpital Necker-Enfants Malades, Assistance Publique-Hôpitaux de Paris, Reference Center for Inherited Metabolic Disease, Necker-Enfants Malades University Hospital and IMAGINE Institute, Paris, France. 3. Azienda Ospedaliera di Padova, U.O.C. Malattie Metaboliche Ereditarie, Padova, Italy. 4. Screening Department, Institute of Mother and Child, Warsaw, Poland. 5. Department of Pediatrics, Academisch Medisch Centrum, Amsterdam, Netherlands. 6. Unidade de Doenças Metabólicas, Serviço de Pediatria, Hospital de S. João, EPE, Porto, Portugal. 7. First Faculty of Medicine Charles University and General University of Prague, Prague, Czech Republic. 8. Ospedale Pediatrico Bambino Gésu, U.O.C. Patologia Metabolica, Rome, Italy. 9. School of Medicine University Hospital Center Zagreb and University of Zagreb, Zagreb, Croatia. 10. Medical University of Innsbruck, Clinic for Pediatrics I, Inherited Metabolic Disorders, Innsbruck, Austria. 11. Institute of Mother and Child Care "Alfred Rusescu", Bucharest, Romania. 12. Division of Metabolism and Children's Research Centre, University Children's Hospital Zurich, Steinwiesstraße 75, 8032, Zurich, Switzerland. 13. Hospital Materno-Infantil (HRU Carlos Haya), Málaga, Spain. 14. Department of General Pediatrics, Division of Inherited Metabolic Diseases, University Children's Hospital Heidelberg, Im Neuenheimer Feld 430, 69120, Heidelberg, Germany. 15. Centre for Inherited Metabolic Diseases, Department of Clinical Genetics, Copenhagen University Hospital, Rigshospitalet, Copenhagen, Denmark. 16. Centre de Référence des Maladies Héréditaires du Métabolisme, Service de Neurologie, Hôpital d'Enfants, CHU Timone, Marseilles, France. 17. Birmingham Children's Hospital NHS Foundation Trust, Steelhouse Lane, Birmingham, B4 6NH, UK. 18. Children's National Medical Center, 111 Michigan Avenue, N.W., Washington, DC, 20010, USA. 19. Hospital San Joan de Deu, Servicio de Neurologia and CIBERER, ISCIII, Barcelona, Spain. 20. Metabolic Unit, Department of Pediatrics, Hospital Clinico Universitario de Santiago de Compostela, Santiago de Compostela, Spain. 21. University Hospital Vrije Universiteit Brussel, Bruxelles, Belgium. 22. Centre de Référence des Maladies Héréditaires du Métabolisme de l'Enfant et de l'Adulte, Hôpital Jeanne de Flandre, Lille, France. 23. Department of Laboratory Diagnostics, The Children's Memorial Health Institute, Warsaw, Poland. 24. Metabolic Unit Great Ormond Street Hospital and Institute for Child Health, University College London, London, UK. 25. 1st Pediatric Department, Metabolic Laboratory, General Hospital of Thessaloniki 'Hippocration', Thessaloniki, Greece. 26. N.I.R.M.A.N., Om Rachna Society, Vashi, Navi Mumbai, Mumbai, India. 27. Department of Pediatrics, Kumamoto University Hospital, Kumamoto City, Japan. 28. Universitätsklinikum Hamburg-Eppendorf, Klinik für Kinder- und Jugendmedizin, Hamburg, Germany. 29. National Hospital for Neurology and Neurosurgery, Charles Dent Metabolic Unit, London, UK. 30. Hôpital Robert Debré, Université de Paris, Paris, France. 31. Department of Pediatrics, Metabolic Diseases Unit, Hospital Infantil Universitario Niño Jesús, Madrid, Spain. 32. Department of Pediatrics, Hospital Universitari Germans Trias I Pujol, Badalona, Spain. 33. University Hospital Center Zagreb, Zagreb, Croatia. 34. Cliniques Universitaires St Luc, Université Catholique de Louvain, Service Gastroentérologie and Hépatologie Pédiatrique, Bruxelles, Belgium. 35. Evelina Children's Hospital, St Thomas' Hospital, London, United Kingdom. 36. Hospital Virgen de la Arrixaca de Murcia, Inborn Metabolic Disease Unit, El Palmar, Spain. 37. Manchester Academic Health Science Centre, University of Manchester, Willink Biochemical Genetics Unit, Genetic Medicine, Manchester, UK. 38. Erasmus MC-Sophia Kinderziekenhuis, Erasmus Universiteit Rotterdam, Rotterdam, Netherlands.
Abstract
BACKGROUND: The disease course and long-term outcome of patients with organic acidurias (OAD) and urea cycle disorders (UCD) are incompletely understood. AIMS: To evaluate the complex clinical phenotype of OAD and UCD patients at different ages. RESULTS: Acquired microcephaly and movement disorders were common in OAD and UCD highlighting that the brain is the major organ involved in these diseases. Cardiomyopathy [methylmalonic (MMA) and propionic aciduria (PA)], prolonged QTc interval (PA), optic nerve atrophy [MMA, isovaleric aciduria (IVA)], pancytopenia (PA), and macrocephaly [glutaric aciduria type 1 (GA1)] were exclusively found in OAD patients, whereas hepatic involvement was more frequent in UCD patients, in particular in argininosuccinate lyase (ASL) deficiency. Chronic renal failure was often found in MMA, with highest frequency in mut(0) patients. Unexpectedly, chronic renal failure was also observed in adolescent and adult patients with GA1 and ASL deficiency. It had a similar frequency in patients with or without a movement disorder suggesting different pathophysiology. Thirteen patients (classic OAD: 3, UCD: 10) died during the study interval, ten of them during the initial metabolic crisis in the newborn period. Male patients with late-onset ornithine transcarbamylase deficiency were presumably overrepresented in the study population. CONCLUSIONS: Neurologic impairment is common in OAD and UCD, whereas the involvement of other organs (heart, liver, kidneys, eyes) follows a disease-specific pattern. The identification of unexpected chronic renal failure in GA1 and ASL deficiency emphasizes the importance of a systematic follow-up in patients with rare diseases.
BACKGROUND: The disease course and long-term outcome of patients with organic acidurias (OAD) and urea cycle disorders (UCD) are incompletely understood. AIMS: To evaluate the complex clinical phenotype of OAD and UCD patients at different ages. RESULTS: Acquired microcephaly and movement disorders were common in OAD and UCD highlighting that the brain is the major organ involved in these diseases. Cardiomyopathy [methylmalonic (MMA) and propionic aciduria (PA)], prolonged QTc interval (PA), optic nerve atrophy [MMA, isovaleric aciduria (IVA)], pancytopenia (PA), and macrocephaly [glutaric aciduria type 1 (GA1)] were exclusively found in OAD patients, whereas hepatic involvement was more frequent in UCD patients, in particular in argininosuccinate lyase (ASL) deficiency. Chronic renal failure was often found in MMA, with highest frequency in mut(0) patients. Unexpectedly, chronic renal failure was also observed in adolescent and adult patients with GA1 and ASL deficiency. It had a similar frequency in patients with or without a movement disorder suggesting different pathophysiology. Thirteen patients (classic OAD: 3, UCD: 10) died during the study interval, ten of them during the initial metabolic crisis in the newborn period. Male patients with late-onset ornithine transcarbamylase deficiency were presumably overrepresented in the study population. CONCLUSIONS:Neurologic impairment is common in OAD and UCD, whereas the involvement of other organs (heart, liver, kidneys, eyes) follows a disease-specific pattern. The identification of unexpected chronic renal failure in GA1 and ASL deficiency emphasizes the importance of a systematic follow-up in patients with rare diseases.
Authors: Ulrike Teufel; Jürgen Weitz; Christa Flechtenmacher; Viola Prietsch; Jan Schmidt; Georg F Hoffmann; Stefan Kölker; Guido Engelmann Journal: Pediatr Transplant Date: 2009-04-26
Authors: Stefan Kölker; Angeles Garcia Cazorla; Vassili Valayannopoulos; Allan M Lund; Alberto B Burlina; Jolanta Sykut-Cegielska; Frits A Wijburg; Elisa Leão Teles; Jiri Zeman; Carlo Dionisi-Vici; Ivo Barić; Daniela Karall; Persephone Augoustides-Savvopoulou; Lise Aksglaede; Jean-Baptiste Arnoux; Paula Avram; Matthias R Baumgartner; Javier Blasco-Alonso; Brigitte Chabrol; Anupam Chakrapani; Kimberly Chapman; Elisenda Cortès I Saladelafont; Maria L Couce; Linda de Meirleir; Dries Dobbelaere; Veronika Dvorakova; Francesca Furlan; Florian Gleich; Wanda Gradowska; Stephanie Grünewald; Anil Jalan; Johannes Häberle; Gisela Haege; Robin Lachmann; Alexander Laemmle; Eveline Langereis; Pascale de Lonlay; Diego Martinelli; Shirou Matsumoto; Chris Mühlhausen; Hélène Ogier de Baulny; Carlos Ortez; Luis Peña-Quintana; Danijela Petković Ramadža; Esmeralda Rodrigues; Sabine Scholl-Bürgi; Etienne Sokal; Christian Staufner; Marshall L Summar; Nicholas Thompson; Roshni Vara; Inmaculada Vives Pinera; John H Walter; Monique Williams; Peter Burgard Journal: J Inherit Metab Dis Date: 2015-11 Impact factor: 4.982
Authors: Sven W Sauer; Silvana Opp; Anne Mahringer; Marcin M Kamiński; Christian Thiel; Jürgen G Okun; Gert Fricker; Marina A Morath; Stefan Kölker Journal: Biochim Biophys Acta Date: 2010-03-17
Authors: Inga Harting; Eva Neumaier-Probst; Angelika Seitz; Esther M Maier; Birgit Assmann; Ivo Baric; Monica Troncoso; Chris Mühlhausen; Johannes Zschocke; Nikolas P S Boy; Georg F Hoffmann; Sven F Garbade; Stefan Kölker Journal: Brain Date: 2009-05-11 Impact factor: 13.501
Authors: Gregory M Enns; Susan A Berry; Gerard T Berry; William J Rhead; Saul W Brusilow; Ada Hamosh Journal: N Engl J Med Date: 2007-05-31 Impact factor: 91.245
Authors: Stefan Kölker; Sven F Garbade; Nikolas Boy; Esther M Maier; Thomas Meissner; Chris Mühlhausen; Julia B Hennermann; Thomas Lücke; Johannes Häberle; Jochen Baumkötter; Wolfram Haller; Edith Muller; Johannes Zschocke; Peter Burgard; Georg F Hoffmann Journal: Pediatr Res Date: 2007-09 Impact factor: 3.756
Authors: Peter Burgard; Stefan Kölker; Gisela Haege; Martin Lindner; Georg F Hoffmann Journal: J Inherit Metab Dis Date: 2015-12-03 Impact factor: 4.982
Authors: Jana Heringer; Vassili Valayannopoulos; Allan M Lund; Frits A Wijburg; Peter Freisinger; Ivo Barić; Matthias R Baumgartner; Peter Burgard; Alberto B Burlina; Kimberly A Chapman; Elisenda Cortès I Saladelafont; Daniela Karall; Chris Mühlhausen; Victoria Riches; Manuel Schiff; Jolanta Sykut-Cegielska; John H Walter; Jiri Zeman; Brigitte Chabrol; Stefan Kölker Journal: J Inherit Metab Dis Date: 2015-12-21 Impact factor: 4.982
Authors: Roland Posset; Angeles Garcia-Cazorla; Vassili Valayannopoulos; Elisa Leão Teles; Carlo Dionisi-Vici; Anaïs Brassier; Alberto B Burlina; Peter Burgard; Elisenda Cortès-Saladelafont; Dries Dobbelaere; Maria L Couce; Jolanta Sykut-Cegielska; Johannes Häberle; Allan M Lund; Anupam Chakrapani; Manuel Schiff; John H Walter; Jiri Zeman; Roshni Vara; Stefan Kölker Journal: J Inherit Metab Dis Date: 2016-04-22 Impact factor: 4.982
Authors: Nikolas Boy; Chris Mühlhausen; Esther M Maier; Jana Heringer; Birgit Assmann; Peter Burgard; Marjorie Dixon; Sandra Fleissner; Cheryl R Greenberg; Inga Harting; Georg F Hoffmann; Daniela Karall; David M Koeller; Michael B Krawinkel; Jürgen G Okun; Thomas Opladen; Roland Posset; Katja Sahm; Johannes Zschocke; Stefan Kölker Journal: J Inherit Metab Dis Date: 2016-11-16 Impact factor: 4.982
Authors: Parith Wongkittichote; Gary Cunningham; Marshall L Summar; Elena Pumbo; Patrick Forny; Matthias R Baumgartner; Kimberly A Chapman Journal: Mol Genet Metab Date: 2019-10-17 Impact factor: 4.797
Authors: Kimberly A Chapman; Maria S Collado; Robert A Figler; Stephen A Hoang; Allison J Armstrong; Wanxing Cui; Michael Purdy; Michael B Simmers; Nada A Yazigi; Marshall L Summar; Brian R Wamhoff; Ajit Dash Journal: Mol Genet Metab Date: 2015-12-24 Impact factor: 4.797