Mitochondrial biogenesis in the anticonvulsant mechanism of the ketogenic diet

被引:420
作者
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.
机构
[1] Emory Univ, Dept Pharmacol, Atlanta, GA 30322 USA
[2] Norwegian Def Res Estab, N-2007 Kjeller, Norway
[3] Emory Univ, Yerkes Natl Primate Res Ctr, Atlanta, GA 30322 USA
[4] Univ N Dakota, Dept Pharmacol Physiol & Therapeut, Grand Forks, ND 58201 USA
[5] Emory Univ, Dept Neurol, Atlanta, GA 30322 USA
关键词
D O I
10.1002/ana.20899
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Objective: The full anticonvulsant effect of the ketogenic diet (KD) can require weeks to develop in rats, suggesting that altered gene expression is involved. The KD typically is used in pediatric epilepsies, but is effective also in adolescents and adults. Our goal was to use microarray and complementary technologies in adolescent rats to understand its anticonvulsant effect. Methods: Microarrays were used to define patterns of gene expression in the hippocampus of rats fed a KD or control diet for 3 weeks. Hippocampi from control- and KD-fed rats were also compared for the number of mitochondrial profiles in electron micrographs, the levels of selected energy metabolites and enzyme activities, and the effect of low glucose on synaptic transmission. Results: Most striking was a coordinated upregulation of all (n = 34) differentially regulated transcripts encoding energy metabolism enzymes and 39 of 42 transcripts encoding mitochondrial proteins, which was accompanied by an increased number of mitochondrial profiles, a higher phosphocreatine/creatine ratio, elevated glutamate levels, and decreased glycogen levels. Consistent with increased energy reserves, synaptic transmission in hippocampal slices from KD-fed animals was resistant to low glucose. Interpretation: These data show that a calorie-restricted KD enhances brain metabolism. We propose an anticonvulsant mechanism of the KD involving mitochondrial biogenesis leading to enhanced alternative energy stores.
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收藏
页码:223 / 235
页数:13
相关论文
共 69 条
[11]   A ketogenic diet increases the resistance to pentylenetetrazole-induced seizures in the rat [J].
Bough, KJ ;
Eagles, DA .
EPILEPSIA, 1999, 40 (02) :138-143
[12]   Seizure resistance is dependent upon age and calorie restriction in rats fed a ketogenic diet [J].
Bough, KJ ;
Valiyil, R ;
Han, FT ;
Eagles, DA .
EPILEPSY RESEARCH, 1999, 35 (01) :21-28
[13]   Path analysis shows that increasing ketogenic ratio, but not β-hydroxybutyrate, elevates seizure threshold in the rat [J].
Bough, KJ ;
Chen, RS ;
Eagles, DA .
DEVELOPMENTAL NEUROSCIENCE, 1999, 21 (3-5) :400-406
[14]  
Bough KJ, 2000, EPILEPSY RES, V38, P15
[15]   A ketogenic diet has different effects upon seizures induced by maximal electroshock and by pentylenetetrazole infusion [J].
Bough, KJ ;
Matthews, PJ ;
Eagles, DA .
EPILEPSY RESEARCH, 2000, 38 (2-3) :105-114
[16]   THE CARDIAC GLYCOSIDE OUABAIN POTENTIATES EXCITOTOXIC INJURY OF ADULT NEURONS IN RAT HIPPOCAMPUS [J].
BRINES, ML ;
DARE, AO ;
DELANEROLLE, NC .
NEUROSCIENCE LETTERS, 1995, 191 (03) :145-148
[17]   TOTAL CELL PROTEIN-CONCENTRATION AS AN EVOLUTIONARY CONSTRAINT ON THE METABOLIC CONTROL DISTRIBUTION IN CELLS [J].
BROWN, GC .
JOURNAL OF THEORETICAL BIOLOGY, 1991, 153 (02) :195-203
[18]   A ketogenic diet increases brain insulin-like growth factor receptor and glucose transporter gene expression [J].
Cheng, CM ;
Kelley, B ;
Wang, J ;
Strauss, D ;
Eagles, DA ;
Bondy, CA .
ENDOCRINOLOGY, 2003, 144 (06) :2676-2682
[19]   Effect of Hypoglycemia on brain glycogen metabolism in vivo [J].
Choi, IY ;
Seaquist, ER ;
Gruetter, R .
JOURNAL OF NEUROSCIENCE RESEARCH, 2003, 72 (01) :25-32
[20]   The ketogenic diet in children, adolescents and young adults with refractory epilepsy: an Italian multicentric experience [J].
Coppola, G ;
Veggiotti, P ;
Cusmai, R ;
Bertoli, S ;
Cardinali, S ;
Dionisi-Vici, C ;
Elia, M ;
Lispi, ML ;
Sarnelli, C ;
Tagliabue, A ;
Toraldo, C ;
Pascotto, A .
EPILEPSY RESEARCH, 2002, 48 (03) :221-227