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Published in: Journal of Inherited Metabolic Disease 2/2017

Open Access 01-03-2017 | Original Article

Ketogenic diet in pyruvate dehydrogenase complex deficiency: short- and long-term outcomes

Authors: Kalliopi Sofou, Maria Dahlin, Tove Hallböök, Marie Lindefeldt, Gerd Viggedal, Niklas Darin

Published in: Journal of Inherited Metabolic Disease | Issue 2/2017

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Abstract

Objectives

Our aime was to study the short- and long-term effects of ketogenic diet on the disease course and disease-related outcomes in patients with pyruvate dehydrogenase complex deficiency, the metabolic factors implicated in treatment outcomes, and potential safety and compliance issues.

Methods

Pediatric patients diagnosed with pyruvate dehydrogenase complex deficiency in Sweden and treated with ketogenic diet were evaluated. Study assessments at specific time points included developmental and neurocognitive testing, patient log books, and investigator and parental questionnaires. A systematic literature review was also performed.

Results

Nineteen patients were assessed, the majority having prenatal disease onset. Patients were treated with ketogenic diet for a median of 2.9 years. All patients alive at the time of data registration at a median age of 6 years. The treatment had a positive effect mainly in the areas of epilepsy, ataxia, sleep disturbance, speech/language development, social functioning, and frequency of hospitalizations. It was also safe—except in one patient who discontinued because of acute pancreatitis. The median plasma concentration of ketone bodies (3-hydroxybutyric acid) was 3.3 mmol/l. Poor dietary compliance was associated with relapsing ataxia and stagnation of motor and neurocognitive development. Results of neurocognitive testing are reported for 12 of 19 patients.

Conclusion

Ketogenic diet was an effective and safe treatment for the majority of patients. Treatment effect was mainly determined by disease phenotype and attainment and maintenance of ketosis.
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Literature
go back to reference Barnerias C, Saudubray JM, Touati G et al (2010) Pyruvate dehydrogenase complex deficiency: four neurological phenotypes with differing pathogenesis. Dev Med Child Neurol 52(2):e1–e9CrossRefPubMed Barnerias C, Saudubray JM, Touati G et al (2010) Pyruvate dehydrogenase complex deficiency: four neurological phenotypes with differing pathogenesis. Dev Med Child Neurol 52(2):e1–e9CrossRefPubMed
go back to reference Cederbaum SD, Blass JP, Minkoff N, Brown WJ, Cotton ME, Harris SH (1976) Sensitivity to carbohydrate in a patient with familial intermittent lactic acidosis and pyruvate dehydrogenase deficiency. Pediatr Res 10(8):713–720CrossRefPubMed Cederbaum SD, Blass JP, Minkoff N, Brown WJ, Cotton ME, Harris SH (1976) Sensitivity to carbohydrate in a patient with familial intermittent lactic acidosis and pyruvate dehydrogenase deficiency. Pediatr Res 10(8):713–720CrossRefPubMed
go back to reference DeBrosse SD, Okajima K, Zhang S et al (2012) Spectrum of neurological and survival outcomes in pyruvate dehydrogenase complex (PDC) deficiency: lack of correlation with genotype. Mol Genet Metab 107(3):394–402CrossRefPubMed DeBrosse SD, Okajima K, Zhang S et al (2012) Spectrum of neurological and survival outcomes in pyruvate dehydrogenase complex (PDC) deficiency: lack of correlation with genotype. Mol Genet Metab 107(3):394–402CrossRefPubMed
go back to reference Di Pisa V, Cecconi I, Gentile V et al (2012) Case report of pyruvate dehydrogenase deficiency with unusual increase of fats during ketogenic diet treatment. J Child Neurol 27(12):1593–1596CrossRefPubMed Di Pisa V, Cecconi I, Gentile V et al (2012) Case report of pyruvate dehydrogenase deficiency with unusual increase of fats during ketogenic diet treatment. J Child Neurol 27(12):1593–1596CrossRefPubMed
go back to reference El-Gharbawy AH, Boney A, Young SP, Kishnani PS (2011) Follow-up of a child with pyruvate dehydrogenase deficiency on a less restrictive ketogenic diet. Mol Genet Metab 102(2):214–215CrossRefPubMed El-Gharbawy AH, Boney A, Young SP, Kishnani PS (2011) Follow-up of a child with pyruvate dehydrogenase deficiency on a less restrictive ketogenic diet. Mol Genet Metab 102(2):214–215CrossRefPubMed
go back to reference Endo H, Hasegawa K, Narisawa K, Tada K, Kagawa Y, Ohta S (1989) Defective gene in lactic acidosis: abnormal pyruvate dehydrogenase E1 alpha-subunit caused by a frame shift. Am J Hum Genet 44(3):358–364PubMedPubMedCentral Endo H, Hasegawa K, Narisawa K, Tada K, Kagawa Y, Ohta S (1989) Defective gene in lactic acidosis: abnormal pyruvate dehydrogenase E1 alpha-subunit caused by a frame shift. Am J Hum Genet 44(3):358–364PubMedPubMedCentral
go back to reference Falk RE, Cederbaum SD, Blass JP, Gibson GE, Kark RA, Carrel RE (1976) Ketonic diet in the management of pyruvate dehydrogenase deficiency. Pediatrics 58(5):713–721PubMed Falk RE, Cederbaum SD, Blass JP, Gibson GE, Kark RA, Carrel RE (1976) Ketonic diet in the management of pyruvate dehydrogenase deficiency. Pediatrics 58(5):713–721PubMed
go back to reference Hallböök T, Lundgren J, Rosén I (2007) Ketogenic diet improves sleep quality in children with therapyresistant epilepsy. Epilepsia 48:59–65CrossRefPubMed Hallböök T, Lundgren J, Rosén I (2007) Ketogenic diet improves sleep quality in children with therapyresistant epilepsy. Epilepsia 48:59–65CrossRefPubMed
go back to reference Hallböök T, Ji S, Maudsley S, Martin B (2012) The effects of the ketogenic diet on behavior and cognition. Epilepsy Res 100(3):304–309CrossRefPubMed Hallböök T, Ji S, Maudsley S, Martin B (2012) The effects of the ketogenic diet on behavior and cognition. Epilepsy Res 100(3):304–309CrossRefPubMed
go back to reference Hallböök T, Sjölander A, Åmark P, Miranda M, Bjurulf B, Dahlin M (2015) Effectiveness of the ketogenic diet used to treat resistant childhood epilepsy in Scandinavia. Eur J Paediatr Neurol 19(1):29–36CrossRefPubMed Hallböök T, Sjölander A, Åmark P, Miranda M, Bjurulf B, Dahlin M (2015) Effectiveness of the ketogenic diet used to treat resistant childhood epilepsy in Scandinavia. Eur J Paediatr Neurol 19(1):29–36CrossRefPubMed
go back to reference Kang HC, Kwon JW, Lee YM, Kim HD, Lee HJ, Hahn SH (2007) Nonspecific mitochondrial disease with epilepsy in children: diagnostic approaches and epileptic phenotypes. Childs Nerv Syst 23(11):1301–1307CrossRefPubMed Kang HC, Kwon JW, Lee YM, Kim HD, Lee HJ, Hahn SH (2007) Nonspecific mitochondrial disease with epilepsy in children: diagnostic approaches and epileptic phenotypes. Childs Nerv Syst 23(11):1301–1307CrossRefPubMed
go back to reference McWilliam CA, Ridout CK, Brown RM, McWilliam RC, Tolmie J, Brown GK (2010) Pyruvate dehydrogenase E2 deficiency: a potentially treatable cause of episodic dystonia. Eur J Paediatr Neurol 14(4):349–353CrossRefPubMed McWilliam CA, Ridout CK, Brown RM, McWilliam RC, Tolmie J, Brown GK (2010) Pyruvate dehydrogenase E2 deficiency: a potentially treatable cause of episodic dystonia. Eur J Paediatr Neurol 14(4):349–353CrossRefPubMed
go back to reference Nordli DR Jr, Kuroda MM, Carroll J et al (2001) Experience with the ketogenic diet in infants. Pediatrics 108(1):129–133CrossRefPubMed Nordli DR Jr, Kuroda MM, Carroll J et al (2001) Experience with the ketogenic diet in infants. Pediatrics 108(1):129–133CrossRefPubMed
go back to reference Patel KP, O’Brien TW, Subramony SH, Shuster J, Stacpoole PW (2012) The spectrum of pyruvate dehydrogenase complex deficiency: clinical, biochemical and genetic features in 371 patients. Mol Genet Metab 105(1):34–43CrossRefPubMed Patel KP, O’Brien TW, Subramony SH, Shuster J, Stacpoole PW (2012) The spectrum of pyruvate dehydrogenase complex deficiency: clinical, biochemical and genetic features in 371 patients. Mol Genet Metab 105(1):34–43CrossRefPubMed
go back to reference Pierre K, Pellerin L (2005) Monocarboxylate transporters in the central nervous system: distribution, regulation and function. J Neurochem 94(1):1–14CrossRefPubMed Pierre K, Pellerin L (2005) Monocarboxylate transporters in the central nervous system: distribution, regulation and function. J Neurochem 94(1):1–14CrossRefPubMed
go back to reference Prasad C, Rupar T, Prasad AN (2011) Pyruvate dehydrogenase deficiency and epilepsy. Brain Dev 33(10):856–865CrossRefPubMed Prasad C, Rupar T, Prasad AN (2011) Pyruvate dehydrogenase deficiency and epilepsy. Brain Dev 33(10):856–865CrossRefPubMed
go back to reference Pulsifer MB, Gordon JM, Brandt J, Vining EP, Freeman JM (2001) Effects of ketogenic diet on development and behavior: preliminary report of a prospective study. Dev Med Child Neurol 43:301–306CrossRefPubMed Pulsifer MB, Gordon JM, Brandt J, Vining EP, Freeman JM (2001) Effects of ketogenic diet on development and behavior: preliminary report of a prospective study. Dev Med Child Neurol 43:301–306CrossRefPubMed
go back to reference Robinson B, MacMillan H, Petrova-Benedict R, Sherwood W (1987) Variable clinical presentation in patients with defective E1 component of pyruvate dehydrogenase complex. J Pediatr 111:525–533CrossRefPubMed Robinson B, MacMillan H, Petrova-Benedict R, Sherwood W (1987) Variable clinical presentation in patients with defective E1 component of pyruvate dehydrogenase complex. J Pediatr 111:525–533CrossRefPubMed
go back to reference Scholl-Bürgi S, Höller A, Pichler K, Michel M, Haberlandt E, Karall D (2015) Ketogenic diets in patients with inherited metabolic disorders. J Inherit Metab Dis 38(4):765–773CrossRefPubMed Scholl-Bürgi S, Höller A, Pichler K, Michel M, Haberlandt E, Karall D (2015) Ketogenic diets in patients with inherited metabolic disorders. J Inherit Metab Dis 38(4):765–773CrossRefPubMed
go back to reference Sharma R, Sharrard MJ, Connolly DJ, Mordekar SR (2012) Unilateral periventricular leukomalacia in association with pyruvate dehydrogenase deficiency. Dev Med Child Neurol 54(5):469–471CrossRefPubMed Sharma R, Sharrard MJ, Connolly DJ, Mordekar SR (2012) Unilateral periventricular leukomalacia in association with pyruvate dehydrogenase deficiency. Dev Med Child Neurol 54(5):469–471CrossRefPubMed
go back to reference Singhi P, De Meirleir L, Lissens W, Singhi S, Saini AG (2013) Pyruvate dehydrogenase-e1α deficiency presenting as recurrent demyelination: an unusual presentation and a novel mutation. JIMD Rep 10:107–111CrossRefPubMedPubMedCentral Singhi P, De Meirleir L, Lissens W, Singhi S, Saini AG (2013) Pyruvate dehydrogenase-e1α deficiency presenting as recurrent demyelination: an unusual presentation and a novel mutation. JIMD Rep 10:107–111CrossRefPubMedPubMedCentral
go back to reference Steller J, Gargus JJ, Gibbs LH, Hasso AN, Kimonis VE (2014) Mild phenotype in a male with pyruvate dehydrogenase complex deficiency associated with novel hemizygous in-frame duplication of the E1α subunit gene (PDHA1). Neuropediatrics 45(1):56–60CrossRefPubMed Steller J, Gargus JJ, Gibbs LH, Hasso AN, Kimonis VE (2014) Mild phenotype in a male with pyruvate dehydrogenase complex deficiency associated with novel hemizygous in-frame duplication of the E1α subunit gene (PDHA1). Neuropediatrics 45(1):56–60CrossRefPubMed
go back to reference Wada N, Matsuishi T, Nonaka M, Naito E, Yoshino M (2004) Pyruvate dehydrogenase E1alpha subunit deficiency in a female patient: evidence of antenatal origin of brain damage and possible etiology of infantile spasms. Brain Dev 26(1):57–60CrossRefPubMed Wada N, Matsuishi T, Nonaka M, Naito E, Yoshino M (2004) Pyruvate dehydrogenase E1alpha subunit deficiency in a female patient: evidence of antenatal origin of brain damage and possible etiology of infantile spasms. Brain Dev 26(1):57–60CrossRefPubMed
go back to reference Wexler ID, Hemalatha SG, McConnell J et al (1997) Outcome of pyruvate dehydrogenase deficiency treated with ketogenic diets. Studies in patients with identical mutations. Neurology 49(6):1655–1661CrossRefPubMed Wexler ID, Hemalatha SG, McConnell J et al (1997) Outcome of pyruvate dehydrogenase deficiency treated with ketogenic diets. Studies in patients with identical mutations. Neurology 49(6):1655–1661CrossRefPubMed
go back to reference Wijburg FA, Barth PG, Bindoff LA et al (1992) Leigh syndrome associated with a deficiency of the pyruvate dehydrogenase complex: results of treatment with a ketogenic diet. Neuropediatrics 23(3):147–152CrossRefPubMed Wijburg FA, Barth PG, Bindoff LA et al (1992) Leigh syndrome associated with a deficiency of the pyruvate dehydrogenase complex: results of treatment with a ketogenic diet. Neuropediatrics 23(3):147–152CrossRefPubMed
go back to reference Wilder RM (1921) The effect of ketonuria on the course of epilepsy. Mayo Clin Bull 2:307 Wilder RM (1921) The effect of ketonuria on the course of epilepsy. Mayo Clin Bull 2:307
Metadata
Title
Ketogenic diet in pyruvate dehydrogenase complex deficiency: short- and long-term outcomes
Authors
Kalliopi Sofou
Maria Dahlin
Tove Hallböök
Marie Lindefeldt
Gerd Viggedal
Niklas Darin
Publication date
01-03-2017
Publisher
Springer Netherlands
Published in
Journal of Inherited Metabolic Disease / Issue 2/2017
Print ISSN: 0141-8955
Electronic ISSN: 1573-2665
DOI
https://doi.org/10.1007/s10545-016-0011-5

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