Reduced frontal cortex inositol levels in postmortem brain of suicide victims and patients with bipolar disorder
- 1 August 1997
- journal article
- Published by American Psychiatric Association Publishing in American Journal of Psychiatry
- Vol. 154 (8) , 1148-1150
- https://doi.org/10.1176/ajp.154.8.1148
Abstract
This study aimed to evaluate aspects of second messenger function in the brain of suicide victims and patients with bipolar disorder. Inositol and its synthetic enzyme, inositol monophosphatase, were measured in postmortem brain samples of 10 suicide victims, eight patients with bipolar affective disorder, and 10 normal comparison subjects. The frontal cortex inositol levels of the suicide victims and the patients with bipolar disorder were significantly less than those of the normal comparison group. No differences in cerebellum or occipital cortex inositol levels were found among the three groups. The groups also showed no differences in inositol monophosphatase activity in any brain area. These results could suggest a deficiency of second messenger precursor in patients with bipolar disorder and suicide victims.Keywords
This publication has 9 references indexed in Scilit:
- CSF inositol does not predict antidepressant response to inositolJournal Of Neural Transmission-Parkinsons Disease and Dementia Section, 1996
- Effect of age, sex steroids, brain region, and genetic strain on brain inositol monophosphatase activityBiological Psychiatry, 1996
- The Mechanism of Muscarinic Receptor‐Stimulated Phosphatidylinositol Resynthesis in 1321N1 Astrocytoma Cells and Its Inhibition by Li+Journal of Neurochemistry, 1995
- Abnormal frontal lobe phosphorous metabolism in bipolar disorderAmerican Journal of Psychiatry, 1995
- Double-blind, controlled trial of inositol treatment of depressionAmerican Journal of Psychiatry, 1995
- High-dose peripheral inositol raises brain inositol levels and reverses behavioral effects of inositol depletion by lithiumPharmacology Biochemistry and Behavior, 1994
- Lithium and the Phosphoinositide Signalling SystemPublished by Elsevier ,1991
- myo-Inositol: A Newly Identified Nonnitrogenous Osmoregulatory Molecule in Mammalian BrainPediatric Research, 1989
- Lithium amplifies agonist-dependent phosphatidylinositol responses in brain and salivary glandsBiochemical Journal, 1982