Magnetic Resonance Spectroscopy Studies of Glutamate-Related Abnormalities in Mood Disorders

被引:374
作者
Yuksel, Cagri [1 ,2 ]
Oenguer, Dost [1 ,3 ]
机构
[1] McLean Hosp, Belmont, MA 02478 USA
[2] Istanbul Univ, Istanbul Med Sch, Istanbul, Turkey
[3] Harvard Univ, Sch Med, Boston, MA USA
关键词
Bipolar disorder; depression; glutamate; glutamine; Glx; magnetic resonance spectroscopy; mania; GAMMA-AMINOBUTYRIC-ACID; DORSOLATERAL PREFRONTAL CORTEX; EXCITATORY AMINO-ACIDS; TREATMENT-RESISTANT DEPRESSION; LAMINA-SPECIFIC ABNORMALITIES; MEDICATION-FREE PATIENTS; OPEN-LABEL TRIAL; IN-VIVO; ELECTROCONVULSIVE-THERAPY; METABOLIC ALTERATIONS;
D O I
10.1016/j.biopsych.2010.06.016
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
In mood disorders, there is growing evidence for glutamatergic abnormalities derived from peripheral measures of glutamatergic metabolites in patients, postmortem studies on glutamate-related markers, and animal studies on the mechanism of action of available treatments. Magnetic resonance spectroscopy (MRS) has the potential to corroborate and extend these findings with the advantage of in vivo assessment of glutamate-related metabolites in different disease states, in response to treatment, and in relation with functional imaging data. In this article, we first review the biological significance of glutamate, glutamine, and Glx (composed mainly of glutamate and glutamine). Next, we review the MRS literature in mood disorders, examining these glutamate-related metabolites. Here, we find a highly consistent pattern of Glx-level reductions in major depressive disorder and elevations in bipolar disorder. In addition, studies of depression, regardless of diagnosis, provide suggestive evidence for reduced glutamine/glutamate ratio and in mania for elevated glutamine/glutamate ratio. These patterns suggest that the glutamate-related metabolite pool (not all of it necessarily relevant to neurotransmission) is constricted in major depressive disorder and expanded in bipolar disorder. Depressive and manic episodes may be characterized by modulation of the glutamine/glutamate ratio in opposite directions, possibly suggesting reduced versus elevated glutamate conversion to glutamine by glial cells, respectively. We discuss the implications of these results for the pathophysiology of mood disorders and suggest future directions for MRS studies.
引用
收藏
页码:785 / 794
页数:10
相关论文
共 99 条
[71]   ROLE OF GLIAL-CELLS FOR THE BASAL AND CA-2+-DEPENDENT K+-EVOKED RELEASE OF TRANSMITTER AMINO-ACIDS INVESTIGATED BY MICRODIALYSIS [J].
PAULSEN, RE ;
FONNUM, F .
JOURNAL OF NEUROCHEMISTRY, 1989, 52 (06) :1823-1829
[72]   Effective electroconvulsive therapy reverses glutamate/glutamine deficit in the left anterior cingulum of unipolar depressed patients [J].
Pfleiderer, B ;
Michael, N ;
Erfurth, A ;
Ohrmann, P ;
Hohmann, U ;
Wolgast, M ;
Fiebich, M ;
Arolt, V ;
Heindel, W .
PSYCHIATRY RESEARCH-NEUROIMAGING, 2003, 122 (03) :185-192
[73]   Metabolic alterations in medication-free patients with bipolar disorder: A 3T CSF-corrected magnetic resonance spectroscopic imaging study [J].
Port, John D. ;
Unal, Sencan S. ;
Mrazek, David A. ;
Marcus, Susan M. .
PSYCHIATRY RESEARCH-NEUROIMAGING, 2008, 162 (02) :113-121
[74]   Neurocircuitry of Mood Disorders [J].
Price, Joseph L. ;
Drevets, Wayne C. .
NEUROPSYCHOPHARMACOLOGY, 2010, 35 (01) :192-216
[75]   Amino Acid Neurotransmitters Assessed by Proton Magnetic Resonance Spectroscopy: Relationship to Treatment Resistance in Major Depressive Disorder [J].
Price, Rebecca B. ;
Shungu, Dikoma C. ;
Mao, Xiangling ;
Nestadt, Paul ;
Kelly, Chris ;
Collins, Katherine A. ;
Murrough, James W. ;
Charney, Dennis S. ;
Mathew, Sanjay J. .
BIOLOGICAL PSYCHIATRY, 2009, 65 (09) :792-800
[76]   Morphometric evidence for neuronal and glial prefrontal cell pathology in major depression [J].
Rajkowska, G ;
Miguel-Hidalgo, JJ ;
Wei, JR ;
Dilley, G ;
Pittman, SD ;
Meltzer, HY ;
Overholser, JC ;
Roth, BL ;
Stockmeier, CA .
BIOLOGICAL PSYCHIATRY, 1999, 45 (09) :1085-1098
[77]   Reductions in neuronal and glial density characterize the dorsolateral prefrontal cortex in bipolar disorder [J].
Rajkowska, G ;
Halaris, A ;
Selemon, LD .
BIOLOGICAL PSYCHIATRY, 2001, 49 (09) :741-752
[78]   In vivo NMR studies of the glutamate neurotransmitter flux and neuroenergetics: Implications for brain function [J].
Rothman, DL ;
Behar, KL ;
Hyder, F ;
Shulman, RG .
ANNUAL REVIEW OF PHYSIOLOGY, 2003, 65 :401-427
[79]   ALTERATION OF STRIATAL GLUTAMATE RELEASE AFTER GLUTAMINE-SYNTHETASE INHIBITION [J].
ROTHSTEIN, JD ;
TABAKOFF, B .
JOURNAL OF NEUROCHEMISTRY, 1984, 43 (05) :1438-1446
[80]   Acute and longer-term outcomes in depressed outpatients requiring one or several treatment steps: A STAR*D report [J].
Rush, A. John ;
Trivedi, Madhukar H. ;
Wisniewski, Stephen R. ;
Nierenberg, Andrew A. ;
Stewart, Jonathan W. ;
Warden, Diane ;
Niederehe, George ;
Thase, Michael E. ;
Lavori, Philip W. ;
Lebowitz, Barry D. ;
McGrath, Patrick J. ;
Rosenbaum, Jerrold F. ;
Sackeim, Harold A. ;
Kupfer, David J. ;
Luther, James ;
Fava, Maurizio .
AMERICAN JOURNAL OF PSYCHIATRY, 2006, 163 (11) :1905-1917