关键词: AA ALA AP Activator Protein Arachidonic acid Astrocytoma COX CYP DGLA DHA Docosahexaenoic acid EPA Eicosanoids FABP7 (B-FABP) Fatty acid binding protein GFAP GLA LA LDL LOX Lipid metabolism MAPK Malignant glioma NFI Nuclear Factor I PG PLA(2) PPAR PPAR response element PPRE PUFA VLDL arachidonic acid brain fatty acid binding protein cis-linoleic acid cyclooxygenases cytochrome P450 dihomo-gammalinolenic acid docosahexaenoic acid eicosapentaenoic acid gamma-linolenic acid glial fibrillary acidic protein lipoxygenase low density lipoprotein mitogen-activated protein kinase peroxisome proliferator-activated receptor phospholipase A(2) polyunsaturated fatty acid prostaglandin very low density lipoprotein α-linolenic acid

Mesh : Arachidonic Acid / metabolism Brain Neoplasms / diagnosis metabolism Docosahexaenoic Acids / metabolism Fatty Acid-Binding Proteins / chemistry genetics metabolism Fatty Acids, Unsaturated / metabolism Glioma / diagnosis metabolism Humans Prognosis

来  源:   DOI:10.1016/j.plipres.2013.08.004   PDF(Sci-hub)

Abstract:
Malignant gliomas are the most common adult brain cancers. In spite of aggressive treatment, recurrence occurs in the great majority of patients and is invariably fatal. Polyunsaturated fatty acids are abundant in brain, particularly ω-6 arachidonic acid (AA) and ω-3 docosahexaenoic acid (DHA). Although the levels of ω-6 and ω-3 polyunsaturated fatty acids are tightly regulated in brain, the ω-6:ω-3 ratio is dramatically increased in malignant glioma, suggesting deregulation of fundamental lipid homeostasis in brain tumor tissue. The migratory properties of malignant glioma cells can be modified by altering the ratio of AA:DHA in growth medium, with increased migration observed in AA-rich medium. This fatty acid-dependent effect on cell migration is dependent on expression of the brain fatty acid binding protein (FABP7) previously shown to bind DHA and AA. Increased levels of enzymes involved in eicosanoid production in FABP7-positive malignant glioma cells suggest that FABP7 is an important modulator of AA metabolism. We provide evidence that increased production of eicosanoids in FABP7-positive malignant glioma growing in an AA-rich environment contributes to tumor infiltration in the brain. We discuss pathways and molecules that may underlie FABP7/AA-mediated promotion of cell migration and FABP7/DHA-mediated inhibition of cell migration in malignant glioma.
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