Metabolic epilepsies amenable to ketogenic therapies: Indications, contraindications, and underlying mechanisms

被引:28
作者
Gavrilovici, Cezar
Rho, Jong M.
机构
[1] Univ Calif San Diego, Dept Neurosci, Rady Childrens Hosp, San Diego, CA 92103 USA
[2] Univ Calif San Diego, Dept Pediat, Rady Childrens Hosp, San Diego, CA 92103 USA
关键词
epilepsy; glucose transporter deficiency; ketogenic diet; ketone bodies; mechanisms; mitochondria; nonketotic hyperglycinemia; pyruvate dehydrogenase deficiency; succinic semialdehyde dehydrogenase deficiency; SEMIALDEHYDE DEHYDROGENASE-DEFICIENCY; MODIFIED ATKINS DIET; KETONE-BODIES; BETA-HYDROXYBUTYRATE; OXIDATIVE STRESS; GABA-METABOLISM; MITOCHONDRIAL DYSFUNCTION; CLINICAL PHENOTYPE; NMDA RECEPTORS; AMINO-ACIDS;
D O I
10.1002/jimd.12283
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Metabolic epilepsies arise in the context of rare inborn errors of metabolism (IEM), notably glucose transporter type 1 deficiency syndrome, succinic semialdehyde dehydrogenase deficiency, pyruvate dehydrogenase complex deficiency, nonketotic hyperglycinemia, and mitochondrial cytopathies. A common feature of these disorders is impaired bioenergetics, which through incompletely defined mechanisms result in a wide spectrum of neurological symptoms, such as epileptic seizures, developmental delay, and movement disorders. The ketogenic diet (KD) has been successfully utilized to treat such conditions to varying degrees. While the mechanisms underlying the clinical efficacy of the KD in IEM remain unclear, it is likely that the proposed heterogeneous targets influenced by the KD work in concert to rectify or ameliorate the downstream negative consequences of genetic mutations affecting key metabolic enzymes and substrates-such as oxidative stress and cell death. These beneficial effects can be broadly grouped into restoration of impaired bioenergetics and synaptic dysfunction, improved redox homeostasis, anti-inflammatory, and epigenetic activity. Hence, it is conceivable that the KD might prove useful in other metabolic disorders that present with epileptic seizures. At the same time, however, there are notable contraindications to KD use, such as fatty acid oxidation disorders. Clearly, more research is needed to better characterize those metabolic epilepsies that would be amenable to ketogenic therapies, both experimentally and clinically. In the end, the expanded knowledge base will be critical to designing metabolism-based treatments that can afford greater clinical efficacy and tolerability compared to current KD approaches, and improved long-term outcomes for patients.
引用
收藏
页码:42 / 53
页数:12
相关论文
共 126 条
[1]   Use of modified Atkins diet in glucose transporter type 1 deficiency syndrome [J].
Amalou, Sofiane ;
Gras, Domitille ;
Ilea, Adina ;
Greneche, Marie-Odile ;
Francois, Laurent ;
Bellavoine, Vanina ;
Delanoe, Catherine ;
Auvin, Stephane .
DEVELOPMENTAL MEDICINE AND CHILD NEUROLOGY, 2016, 58 (11) :1193-1199
[2]   Pyruvate dehydrogenase complex deficiency: four neurological phenotypes with differing pathogenesis [J].
Barnerias, Christine ;
Saudubray, Jean-Marie ;
Touati, Guy ;
De Lonlay, Pascale ;
Dulac, Olivier ;
Ponsot, Gerard ;
Marsac, Cecile ;
Brivet, Michele ;
Desguerre, Isabelle .
DEVELOPMENTAL MEDICINE AND CHILD NEUROLOGY, 2010, 52 (02) :e1-e9
[3]   Failure of ketogenic diet therapy in GLUT1 deficiency syndrome [J].
Bekker, Yvonne A. C. ;
Lambrechts, Danielle A. ;
Verhoeven, Judith S. ;
van Boxtel, Jessy ;
Troost, Caroline ;
Kamsteeg, Erik-Jan ;
Willemsen, Michel A. ;
Braakman, Hilde M. H. .
EUROPEAN JOURNAL OF PAEDIATRIC NEUROLOGY, 2019, 23 (03) :404-409
[4]   Epigenetics and epilepsy prevention: The therapeutic potential of adenosine and metabolic therapies [J].
Boison, Detlev ;
Rho, Jong M. .
NEUROPHARMACOLOGY, 2020, 167
[5]   Mitochondrial biogenesis in the anticonvulsant mechanism of the ketogenic diet [J].
Bough, Kristopher J. ;
Wetherington, Jonathon ;
Hassel, Bjornar ;
Pare, Jean Francois ;
Gawryluk, Jeremy W. ;
Greene, James G. ;
Shaw, Renee ;
Smith, Yoland ;
Geiger, Jonathan D. ;
Dingledine, Raymond J. .
ANNALS OF NEUROLOGY, 2006, 60 (02) :223-235
[6]  
Brambilla A, 2014, JIMD REP, V17, P91, DOI 10.1007/8904_2014_343
[7]   Succinic semialdehyde dehydrogenase deficiency:: GABAB receptor-mediated function [J].
Buzzi, Andrea ;
Wu, Ying ;
Frantseva, Marina V. ;
Velazquez, Jose L. Perez ;
Cortez, Miguel A. ;
Liu, Chun C. ;
Shen, Li Q. ;
Gibson, K. Michael ;
Snead, O. Carter, III .
BRAIN RESEARCH, 2006, 1090 :15-22
[8]   Seizure semiology and EEG findings in mitochondrial diseases [J].
Chevallier, Justyna A. ;
Von Allmen, Gretchen K. ;
Koenig, Mary Kay .
EPILEPSIA, 2014, 55 (05) :707-712
[9]   Ketogenic diet in early myoclonic encephalopathy due to non ketotic hyperglycinemia [J].
Cusmai, Raffaella ;
Martinelli, Diego ;
Moavero, Romina ;
Vici, Carlo Dionisi ;
Vigevano, Federico ;
Castana, Cinzia ;
Elia, Mirella ;
Bernabei, Silvia ;
Bevivino, Elsa .
EUROPEAN JOURNAL OF PAEDIATRIC NEUROLOGY, 2012, 16 (05) :509-513
[10]   The ketogenic diet influences the levels of excitatory and inhibitory amino acids in the CSF in children with refractory epilepsy [J].
Dahlin, M ;
Elfving, Å ;
Ungerstedt, U ;
Åmark, P .
EPILEPSY RESEARCH, 2005, 64 (03) :115-125