The Arachidonic Acid Cascade, Eicosanoids, and Signal Transduction
Identifieur interne : 002C62 ( Main/Exploration ); précédent : 002C61; suivant : 002C63The Arachidonic Acid Cascade, Eicosanoids, and Signal Transduction
Auteurs : U. Jan En-Timmen [Allemagne] ; I. Tomiç [Allemagne] ; E. Specht [Allemagne] ; U. Beilecke [Allemagne] ; A. J. R. Habenicht [Allemagne]Source :
- Annals of the New York Academy of Sciences [ 0077-8923 ] ; 1994-09.
English descriptors
- Teeft :
- Acid phospholipases, Adenylyl cyclase, Agonist, Animal cells, Arachidonic, Arachidonic acid, Arachidonic acid cascade, Arachidonic acid metabolism, Biol, Biological effects, Biosynthesis, Cell cycle, Cellular phospholipids, Chem, Cholesteryl ester, Cholesteryl esters, Culture medium, Cytosolic phospholipase, Different tissues, Differential production, Differentiation factors, Eicosanoid, Eicosanoid biosynthesis, Eicosanoid formation, Eicosanoid production, Eicosanoid synthesis, Eicosanoids, Epithelial origin, Ester, Fatty acids, Fibroblast, Form eicosanoids, Growth factor, Growth factors, Habenicht, Intracellular concentration, Lipid esters, Lipoprotein, Lysosomal compartment, Maximal rates, Mcgraw hill information services company, Mesenchymal cells, Metabolic basis, Metabolism, Monocyte, Normal rates, Pathway, Phospholipase, Phospholipases, Plasma lipoproteins, Receptor, Receptor adenylyl cyclase, Receptor antibodies, Receptor level, Receptor pathway, Receptor subtype, Reconstituted, Second messengers, Secondary lysosomes, Several cell types, Signal transduction, Significant amounts, Specific receptors, Springer verlag, Synthase, Synthase pathway, Synthase reaction, Unesterified, Unesterified cholesterol, Unpublished studies, York academy.
Url:
DOI: 10.1111/j.1749-6632.1994.tb17282.x
Affiliations:
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Le document en format XML
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<term>Arachidonic</term>
<term>Arachidonic acid</term>
<term>Arachidonic acid cascade</term>
<term>Arachidonic acid metabolism</term>
<term>Biol</term>
<term>Biological effects</term>
<term>Biosynthesis</term>
<term>Cell cycle</term>
<term>Cellular phospholipids</term>
<term>Chem</term>
<term>Cholesteryl ester</term>
<term>Cholesteryl esters</term>
<term>Culture medium</term>
<term>Cytosolic phospholipase</term>
<term>Different tissues</term>
<term>Differential production</term>
<term>Differentiation factors</term>
<term>Eicosanoid</term>
<term>Eicosanoid biosynthesis</term>
<term>Eicosanoid formation</term>
<term>Eicosanoid production</term>
<term>Eicosanoid synthesis</term>
<term>Eicosanoids</term>
<term>Epithelial origin</term>
<term>Ester</term>
<term>Fatty acids</term>
<term>Fibroblast</term>
<term>Form eicosanoids</term>
<term>Growth factor</term>
<term>Growth factors</term>
<term>Habenicht</term>
<term>Intracellular concentration</term>
<term>Lipid esters</term>
<term>Lipoprotein</term>
<term>Lysosomal compartment</term>
<term>Maximal rates</term>
<term>Mcgraw hill information services company</term>
<term>Mesenchymal cells</term>
<term>Metabolic basis</term>
<term>Metabolism</term>
<term>Monocyte</term>
<term>Normal rates</term>
<term>Pathway</term>
<term>Phospholipase</term>
<term>Phospholipases</term>
<term>Plasma lipoproteins</term>
<term>Receptor</term>
<term>Receptor adenylyl cyclase</term>
<term>Receptor antibodies</term>
<term>Receptor level</term>
<term>Receptor pathway</term>
<term>Receptor subtype</term>
<term>Reconstituted</term>
<term>Second messengers</term>
<term>Secondary lysosomes</term>
<term>Several cell types</term>
<term>Signal transduction</term>
<term>Significant amounts</term>
<term>Specific receptors</term>
<term>Springer verlag</term>
<term>Synthase</term>
<term>Synthase pathway</term>
<term>Synthase reaction</term>
<term>Unesterified</term>
<term>Unesterified cholesterol</term>
<term>Unpublished studies</term>
<term>York academy</term>
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