| Preface | p. ix |
| List of Contributors | p. xi |
| Lipoxygenases and Leukotriene Biosynthesis | |
| Phosphorylation and Activation of 5-Lipoxygenase by P38 Kinase-Activated MAPKAP Kinases | p. 1 |
| 5-Lipoxygenase and the Nucleus: Where, When, How, and Why? | p. 9 |
| Calcium Binding Site of 5-Lipoxygenase | p. 17 |
| Regulation of Cellular 5-Lipoxygenase Activity by Glutathione Peroxidases | p. 21 |
| Novel Aspects Related to Biosynthesis and Biological Actions of Hepoxilins: Interrelationship with Phospholipid Hydro-Peroxide Glutathione Peroxidase (PHGPx) | p. 25 |
| Transcriptional Regulation of the Human Leukotriene C[subscript 4] Synthase Promoter | p. 31 |
| Localization and Translocation of Enzymes Involved in Leukotriene Biosynthesis | p. 37 |
| Cyclooxygenases and Prostaglandin Biosynthesis | |
| Regulation of COX-2 Expression in Fibroblasts, Osteoblasts, Mast Cells, and Macrophages | p. 41 |
| Antimicroinflammatory Lipid Signals from Vascular Cyclooxygenase-2: A Novel Mechanism for NSAID and N-3 PUFA Therapeutic Actions | p. 49 |
| Substrate Interactions in the Cyclooxygenase-1 Active Site | p. 57 |
| Mutation of the Human Prostacyclin Synthase Gene | p. 65 |
| Structure and Function of Two Distinct Types of Prostaglandin D Synthase | p. 69 |
| Roles of Prostaglandin F Synthase | p. 73 |
| Differential Effects of Nitric Oxide on Cyclooxygenase 1 and 2 Activities in Cultured Cells | p. 77 |
| Phospholipase A[subscript 2] | |
| On the Functional Diversity of Secreted Phospholipases A[subscript 2]: Cloning of Novel Mammalian and HIV-1 Antiviral Properties | p. 81 |
| Regulation of Cytosolic Phospholipase A[subscript 2] by Phosphorylation | p. 85 |
| Cytochrome P450 Archidonate Metabolites | |
| Synthesis and Function of 20-Hydroxyeicosatetraenoic Acid in the Kidney | p. 89 |
| Receptors | |
| Altered Bronchodilation and Pulmonary Inflammation in Prostanoid EP[subscript 2] Receptor Knockout Mice | p. 99 |
| Induction of Prostaglandin I[subscript 2] Receptor in Murine Osteoblastic Cell | p. 103 |
| BLT2, a Second Leukotriene B[subscript 4] Receptor | p. 107 |
| Upregulation of Cysteinyl-Leukotriene 1 Receptor Expression by Interleukin-5 in Human Leukocytes | p. 111 |
| Physiological and Pathophysiological Roles of Prostanoids; Lessons from Receptor-Knockout Mice for Clinical Applications | p. 115 |
| Multiple G-Protein Coupling of Chimeric Prostacyclin/Prostaglandin D2 Receptors | p. 121 |
| Eicosanoids and Neuroscience | |
| An Unusual Nicotinic Acetylcholine Receptor Activates the 8-Lipoxygenase Pathway in Aplysia Neurons | p. 125 |
| Cardiovascular System | |
| Neutrophil-Endothelial Cell Interaction: A Multidirectional Cross-Talk in Leukotriene Generation | p. 129 |
| Cyclooxygenase in the Lamb Ductus Arteriosus: Developmental Changes and Upregulation | p. 135 |
| Co-Localization of Prostacyclin (PGI2)-Synthase and Caveolin-1 in Endothelial Cells Underscores New Roles of PGI2 In Angiogenesis | p. 139 |
| Respiratory System | |
| Leukotriene C[subscript 4] Synthase Gene Polymorphism in Severe Asthma | p. 143 |
| Inflammation | |
| Anti-Inflammatory Levels of Aspirin and Salicylate Inhibit Integrin-Dependent Human Neutrophil Aggregation and PMN Influx in COX2- and NFkB(P105)- Knockout Mice | p. 149 |
| Antipyretic Action of Acetaminophen: Inhibition of the Cyclooxygenase Activity of Endothelial Cells Treated with IL-1 | p. 155 |
| Leukotriene-Mediated Alteration of Endothelial Barrier Function | p. 159 |
| GI and Cardiovascular Profiles of New NSAIDs: Selective COX-2 Inhibitors and NO-NSAIDs | p. 163 |
| NO-Releasing NSAIDs Modulate Cytokine Secretion | p. 171 |
| Potent Inhibitory Effects of a NO-NSAID (Flurbiprofen Nitroxybutylester) on Bone Resorption in Vitro and In Vivo | p. 179 |
| Cancer | |
| Lipid Peroxidation and Cyclooxygenase-2 Activity in Human Hepatocellular Carcinoma Cell Lines with and without Multiple Drug Resistance: Correlation with Cell Growth | p. 183 |
| Pulmonary Prostacyclin Synthase Overexpression Improves Survival Following Butylated Hydroxytoluene Exposure | p. 187 |
| Isoprostanes | |
| Reactive Products of the Isoprostane Pathway: Isoketals and Cyclopentenone A[subscript 2]/J[subscript 2]-Isoprostanes | p. 191 |
| Increased Isoprostane 8-epi- PGF[subscript 2A] in Statin-Induced Myopathy | p. 197 |
| Index | p. 201 |
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