The specific aim of this application is to afford the applicant, a physicist, the opportunity to become an independent researcher applying magnetic resonance spectroscopy (MRS) in affective disorders. Two components are proposed to accomplish this: formal academic training in psychology and neuroscience; and two research projects. There is an established literature that suggests the pathophysiology of affective illness may lie in irregularities in second messenger and signal transduction pathways; in particular the phosphatidylcholine (PtdCho) and phosphatidylinositol (PtdIno) cycles. Elements of the PthCho and PtdIno cycles are detectable using proton (1 H) and phosphorous (31 P) MRS, in particular choline containing compounds (Cho), myo-Inositol containing compounds (Ino), phosphomonoesters (PME), phosphodiesters (PDE) and the nucleotide triphosphates (NTPs). Over the five year course of the study 35 subjects with Major Depressive Disorder (MD), 35 subjects with Bipolar I Disorder (BD) and 20 comparison subjects (NC) will be recruited. A priori regions of interest are the anterior cingulate gyrus and the caudate nuclei since functional neuroimaging studies have noted mood state dependent alterations in metabolic activity in these regions and preliminary MRS data from these brain regions have demonstrated mood-state, medication, and diagnosis- dependent alterations in Cho, Ino, beta-NTP and PME. In the first two years of funding subjects will be examined using proton echo planar spectroscopic imaging (PEPSI) at 1.5 T. For the final three years of funding subjects will be examined using 1H decoupled 31P MRSI at 4.0 T. The use of PEPSI at 1.5 T and 1H decoupled 31P MRSI at 4.0 T will allow for the acquisition of spectra from smaller regions of interest, such as the anterior cingulate and the caudate, than is possible with older techniques. In addition, PEPSI affords a time advantage which allows for the absolute quantification of the metabolites detected. All subjects will be examined on two occasions six weeks apart and the following hypotheses will be tested: Increased right cingulate cortex Cho will be associated with depression. A decrease in the left cingulate cortex Cho will occur as a result of antidepressant treatment. Decreased right cingulate cortex Ino will be associated with depression. Decreased caudate nucleus beta-NTP will be associated with depression. An increase in caudate nucleus PME will occur as a result of lithium treatment.

Agency
National Institute of Health (NIH)
Institute
National Institute of Mental Health (NIMH)
Type
Research Scientist Development Award - Research & Training (K01)
Project #
5K01MH001978-04
Application #
6766023
Study Section
Special Emphasis Panel (ZRG1-BDCN-4 (02))
Program Officer
Chavez, Mark
Project Start
2001-09-01
Project End
2006-07-31
Budget Start
2004-08-01
Budget End
2005-07-31
Support Year
4
Fiscal Year
2004
Total Cost
$140,067
Indirect Cost
Name
Mc Lean Hospital (Belmont, MA)
Department
Type
DUNS #
046514535
City
Belmont
State
MA
Country
United States
Zip Code
02478
Lopez-Larson, Melissa; Breeze, Janis L; Kennedy, David N et al. (2010) Age-related changes in the corpus callosum in early-onset bipolar disorder assessed using volumetric and cross-sectional measurements. Brain Imaging Behav 4:220-31
Yildiz, Aysegul; Gokmen, Necati; Kucukguclu, Semih et al. (2010) In vivo proton magnetic resonance spectroscopic examination of benzodiazepine action in humans. Psychiatry Res 184:162-70
Gönenç, Atilla; Frazier, Jean A; Crowley, David J et al. (2010) Combined diffusion tensor imaging and transverse relaxometry in early-onset bipolar disorder. J Am Acad Child Adolesc Psychiatry 49:1260-8
Lopez-Larson, Melissa; Michael, Emily S; Terry, Janine E et al. (2009) Subcortical differences among youths with attention-deficit/hyperactivity disorder compared to those with bipolar disorder with and without attention-deficit/hyperactivity disorder. J Child Adolesc Psychopharmacol 19:31-9
Forester, Brent P; Streeter, Chris C; Berlow, Yosef A et al. (2009) Brain lithium levels and effects on cognition and mood in geriatric bipolar disorder: a lithium-7 magnetic resonance spectroscopy study. Am J Geriatr Psychiatry 17:13-23
Iosifescu, Dan V; Moore, Constance M; Deckersbach, Thilo et al. (2009) Galantamine-ER for cognitive dysfunction in bipolar disorder and correlation with hippocampal neuronal viability: a proof-of-concept study. CNS Neurosci Ther 15:309-19
Moore, Constance M; Biederman, Joseph; Wozniak, Janet et al. (2007) Mania, glutamate/glutamine and risperidone in pediatric bipolar disorder: a proton magnetic resonance spectroscopy study of the anterior cingulate cortex. J Affect Disord 99:19-25
Moore, Constance M; Frazier, Jean A; Glod, Carol A et al. (2007) Glutamine and glutamate levels in children and adolescents with bipolar disorder: a 4.0-T proton magnetic resonance spectroscopy study of the anterior cingulate cortex. J Am Acad Child Adolesc Psychiatry 46:524-34