Altered 13C glucose metabolism in the cortico-striato-thalamo-cortical loop in the MK-801 rat model of schizophrenia

被引:23
作者
Eyjolfsson, Elvar M. [1 ,2 ]
Nilsen, Linn Hege [1 ]
Kondziella, Daniel [3 ]
Brenner, Eiliv [1 ,2 ]
Haberg, Asta [1 ]
Sonnewald, Ursula [1 ]
机构
[1] Norwegian Univ Sci & Technol NTNU, Dept Neurosci, Fac Med, N-7491 Trondheim, Norway
[2] St Olavs Hosp, Trondheim, Norway
[3] Copenhagen Univ Hosp, Rigshosp, Dept Neurol, Copenhagen, Denmark
关键词
C-13; NMRS; dopamine; GABA; glutamate; lactate; GLIAL-NEURONAL INTERACTIONS; MAGNETIC-RESONANCE-SPECTROSCOPY; NMDA RECEPTOR HYPOFUNCTION; DOPAMINE HYPOTHESIS; N-ACETYLASPARTATE; GLUTAMATE; BRAIN; ASPARTATE; PROTON; MODULATION;
D O I
10.1038/jcbfm.2010.193
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Using a modified MK-801 (dizocilpine) N-methyl-D-aspartic acid (NMDA) receptor hypofunction model for schizophrenia, we analyzed glycolysis, as well as glutamatergic, GABAergic, and monoaminergic neurotransmitter synthesis and degradation. Rats received an injection of MK-801 daily for 6 days and on day 6, they also received an injection of [1-C-13] glucose. Extracts of frontal cortex (FCX), parietal and temporal cortex (PTCX), thalamus, striatum, nucleus accumbens (NAc), and hippocampus were analyzed using C-13 nuclear magnetic resonance spectroscopy, high-performance liquid chromatography, and gas chromatography-mass spectrometry. A pronounced reduction in glycolysis was found only in PTCX, in which C-13 labeling of glucose, lactate, and alanine was decreased. C-13 enrichment in lactate, however, was reduced in all areas investigated. The largest reductions in glutamate labeling were detected in FCX and PTCX, whereas in hippocampus, striatum, and Nac, C-13 labeling of glutamate was only slightly but significantly reduced. The thalamus was the only region with unaffected glutamate labeling. c-Aminobutyric acid (GABA) labeling was reduced in all areas, but most significantly in FCX. Glutamine and aspartate labeling was unchanged. Mitochondrial metabolites were also affected. Fumarate labeling was reduced in FCX and thalamus, whereas malate labeling was reduced in FCX, PTCX, striatum, and NAc. Dopamine turnover was decreased in FCX and thalamus, whereas that of serotonin was unchanged in all regions. In conclusion, neurotransmitter metabolism in the cortico-striato-thalamo-cortical loop is severely impaired in the MK-801 (dizocilpine) NMDA receptor hypofunction animal model for schizophrenia. Journal of Cerebral Blood Flow & Metabolism (2011) 31, 976-985; doi:10.1038/jcbfm.2010.193; published online 17 November 2010
引用
收藏
页码:976 / 985
页数:10
相关论文
共 41 条
  • [21] EFFECTS OF MK-801 UPON LOCAL CEREBRAL GLUCOSE-UTILIZATION IN CONSCIOUS RATS AND IN RATS ANESTHETIZED WITH HALOTHANE
    KURUMAJI, A
    MCCULLOCH, J
    [J]. JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1989, 9 (06) : 786 - 794
  • [22] SUBANESTHETIC DOSES OF KETAMINE STIMULATE PSYCHOSIS IN SCHIZOPHRENIA
    LAHTI, AC
    KOFFEL, B
    LAPORTE, D
    TAMMINGA, CA
    [J]. NEUROPSYCHOPHARMACOLOGY, 1995, 13 (01) : 9 - 19
  • [23] Glutainate, dopamine, and schizophrenia - From pathophysiology to treatment
    Laruelle, M
    Kegeles, LS
    Abi-Dargham, A
    [J]. GLUTAMATE AND DISORDERS OF COGNITION AND MOTIVATION, 2003, 1003 : 138 - 158
  • [24] THE N-METHYL-D-ASPARTATE RECEPTOR ANTAGONIST MK-801 INDUCES INCREASES IN DOPAMINE AND SEROTONIN METABOLISM IN SEVERAL BRAIN-REGIONS OF RATS
    LOSCHER, W
    ANNIES, R
    HONACK, D
    [J]. NEUROSCIENCE LETTERS, 1991, 128 (02) : 191 - 194
  • [25] CEREBRAL METABOLIC CHANGES INDUCED BY MK-801 - A 1D (PHOSPHORUS AND PROTON) AND 2D (PROTON) IN-VIVO NMR-SPECTROSCOPY STUDY
    LOUBINOUX, I
    MERIC, P
    BORREDON, J
    CORREZE, JL
    GILLET, B
    BELOEIL, JC
    TIFFON, B
    MISPELTER, J
    LHOSTE, JM
    JACQUES, S
    [J]. BRAIN RESEARCH, 1994, 643 (1-2) : 115 - 124
  • [26] Proton MRS in twin pairs discordant for schizophrenia
    Lutkenhoff, E. S.
    van Erp, T. G.
    Thomas, M. A.
    Therman, S.
    Manninen, M.
    Huttunen, M. O.
    Kaprio, J.
    Lonnqvist, J.
    O'Neill, J.
    Cannon, T. D.
    [J]. MOLECULAR PSYCHIATRY, 2010, 15 (03) : 308 - 318
  • [27] Proteome analysis of schizophrenia patients Wernicke's area reveals an energy metabolism dysregulation
    Martins-de-Souza, Daniel
    Gattaz, Wagner F.
    Schmitt, Andrea
    Novello, Jose C.
    Marangoni, Sergio
    Turck, Christoph W.
    Dias-Neto, Emmanuel
    [J]. BMC PSYCHIATRY, 2009, 9
  • [28] NMDA ANTAGONISTS AS NEUROTHERAPEUTIC DRUGS, PSYCHOTOGENS, NEUROTOXINS, AND RESEARCH TOOLS FOR STUDYING SCHIZOPHRENIA
    OLNEY, JW
    FARBER, NB
    [J]. NEUROPSYCHOPHARMACOLOGY, 1995, 13 (04) : 335 - 345
  • [29] A pharmacological model for psychosis based on N-methyl-D-aspartate receptor hypofunction:: Molecular, cellular, functional and Behavioral abnormalities
    Rujescu, D
    Bender, A
    Keck, M
    Hartmann, AM
    Ohl, F
    Raeder, H
    Giegling, I
    Genius, J
    McCarley, RW
    Möller, HJ
    Grunze, H
    [J]. BIOLOGICAL PSYCHIATRY, 2006, 59 (08) : 721 - 729
  • [30] (+)-MK-801 induced social withdrawal in rats; a model for negative symptoms of schizophrenia
    Rung, JP
    Carlsson, A
    Markinhuhta, KR
    Carlsson, ML
    [J]. PROGRESS IN NEURO-PSYCHOPHARMACOLOGY & BIOLOGICAL PSYCHIATRY, 2005, 29 (05) : 827 - 832