The objectives of the current study were to evaluate (1) the respiratory rates and enzyme activities of brain and muscle mitochondria from rats chronically treated with haloperidol, (2) the protective role of dopamine (DA) D-1 (SKF38393) and D-2 (quinpirole) receptor agonists, and (3) the effect of
Brief chronic effects of lithium administration on rat brain phosphoinositides and phospholipids
β Scribed by M. Navidi; F.-G. Yoa; Dr. G. Y. Sun
- Publisher
- John Wiley and Sons
- Year
- 1991
- Tongue
- English
- Weight
- 594 KB
- Volume
- 28
- Category
- Article
- ISSN
- 0360-4012
No coin nor oath required. For personal study only.
β¦ Synopsis
Abstract
Lithium is known to exert its biochemical action on cells and tissues by inhibiting the enzymic conversion of inositol monophosphates to inositol. However, it is not clear whether this inhibitory action may lead to changes in the de novo biosynthesis of phosphatidylinositol and its phosphorylated derivatives. This biosynthetic scheme may have an important bearing with regard to the receptorβmediated signal transduction mechanism involving hydrolysis of polyphosphoinositides and release of inositol trisphosphate as second messenger for mobilization of intracellular calcium. In this study, the effects of brief chronic lithium administration on metabolism of brain phosphoinositides and other phospholipids were examined using the radiotracer technique with ^32^Pi as precursor. Sprague Dawley rats that were treated with lithium (3β4 meq/kg body wt) twice daily for 2β6 days consistently indicated an increase in the labeling of phosphatidylinositol 4,5βbisphosphates and a decrease in labeling of phosphatidylinositols and phosphatidylethanolamines. These phosphoiipid changes were found in both cortex and hippocampus and appeared to occur primarily in the synaptosomal fraction. Although the extent of the phosphoiipid changes could vary depending on both duration and dose levels of the lithium administered, these results demonstrated subtle effects of lithium on depressing the biosynthesis of phosphatidylinositol as well as phosphatidylethanolamine but perhaps a compensative increase in the synthesis of the phosphatidylinositol 4,5βbisphosphates.
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