Essential Fatty Acids and the Brain
Open Access
- 1 April 2003
- journal article
- review article
- Published by SAGE Publications in The Canadian Journal of Psychiatry
- Vol. 48 (3) , 195-203
- https://doi.org/10.1177/070674370304800308
Abstract
Objective: To review the role of essential fatty acids in brain membrane function and in the genesis of psychiatric disease. Method: Medline databases were searched for published articles with links among the following key words: essential fatty acids, omega-3 fatty acids, docosahexanoic acid, eicosapentanoic acid, arachidonic acid, neurotransmission, phospholipase A2, depression, schizophrenia, mental performance, attention-deficit hyperactivity disorder, and Alzheimer's disease. Biochemistry textbooks were consulted on the role of fatty acids in membrane function, neurotransmission, and eicosanoid formation. The 3-dimensional structures of fatty acids were obtained from the Web site of the Biochemistry Department, University of Arizona (2001). Results: The fatty acid composition of neuronal cell membrane phospholipids reflects their intake in the diet. The degree of a fatty acid's desaturation determines its 3-dimensional structure and, thus, membrane fluidity and function. The ratio between omega-3 and omega-6 polyunsaturated fatty acids (PUFAs), in particular, influences various aspects of serotoninergic and catecholaminergic neurotransmission, as shown by studies in animal models. Phospholipase A2 (PLA2) hydrolyzes fatty acids from membrane phospholipids: liberated omega-6 PUFAs are metabolized to prostaglandins with a higher inflammatory potential, compared with those generated from the omega-3 family. Thus the activity of PLA2 coupled with membrane fatty acid composition may play a central role in the development of neuronal dysfunction. Intervention trials in human subjects show that omega-3 fatty acids have possible positive effects in the treatment of various psychiatric disorders, but more data are needed to make conclusive directives in this regard. Conclusion: The ratio of membrane omega-3 to omega-6 PUFAs can be modulated by dietary intake. This ratio influences neurotransmission and prostaglandin formation, processes that are vital in the maintenance of normal brain function.Keywords
This publication has 89 references indexed in Scilit:
- New gene targets related to schizophrenia and other psychiatric disorders: enzymes, binding proteins and transport proteins involved in phospholipid and fatty acid metabolismProstaglandins, Leukotrienes & Essential Fatty Acids, 1999
- Lipid signallingCurrent Biology, 1998
- Oxidative Stress Hypothesis in Alzheimer's DiseasePublished by Elsevier ,1998
- Preferential In Vivo Incorporation of [3H]Arachidonic Acid from Blood into Rat Brain Synaptosomal Fractions Before and After Cholinergic StimulationJournal of Neurochemistry, 1996
- α‐Linolenic Acid Dietary Deficiency Alters Age‐Related Changes of Dopaminergic and Serotoninergic Neurotransmission in the Rat Frontal CortexJournal of Neurochemistry, 1996
- Synergistic Effects of Acetylcholine and Glutamate on the Release of Arachidonic Acid from Cultured Striatal NeuronsJournal of Neurochemistry, 1995
- Phospholipase D in cell signalling and its relationship to phospholipase CLife Sciences, 1991
- Membrane fatty acids, lipid peroxidation and adenylate cyclase activity in cultured neural cellsBiochemical and Biophysical Research Communications, 1985
- Loss of delta-6-desaturase activity as a key factor in agingMedical Hypotheses, 1981
- Long chain polyunsaturated fatty acids in endogenous depression.Journal of Neurology, Neurosurgery & Psychiatry, 1977