Building upon the extensive compilation of biochemical data featured in Volume I of the Handbook of Eicosanoids, Volume II describes the past, present, and potential future impact of eicosanoid research on new drug development.
Building upon the extensive compilation of biochemical data featured in Volume I of the Handbook of Eicosanoids, Volume II describes the past, present, and potential future impact of eicosanoid research on new drug development.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
1. Introcution to the area 2.Therapeutic Promise of the Eicosanoid Area: An Overview 3. Inhibitors of Eicosanoid production 4. Antiphospholipase Proteins: Introduction and Overview 5. Effects of Corticosteroids on Release of Eicosanoid Precursors 6. Drugs that Inhibit the Activities or Activation of Phospholipases and Other Acylhydrolases 7. Cyclooxygenase Inhibitors 8. Lipoxygenase Inhibitors 9. Selective Inhibitors of Thromboxane Synthetase 10. Modulators of Eicosanoid actions 11. Classification of Prostanoid Receptors 12. Eicosanoid Receptor Antagonists 13. Leukotriene Antagonists 14. Regulation of Cyclic Nucleotide Metabolism in Human Platelets by Prostanoids 15. Opposite Effects of Prostaglandins on Human Platelets Mediated by Distinct Protein Kinases. Index.
1. Introcution to the area 2.Therapeutic Promise of the Eicosanoid Area: An Overview 3. Inhibitors of Eicosanoid production 4. Antiphospholipase Proteins: Introduction and Overview 5. Effects of Corticosteroids on Release of Eicosanoid Precursors 6. Drugs that Inhibit the Activities or Activation of Phospholipases and Other Acylhydrolases 7. Cyclooxygenase Inhibitors 8. Lipoxygenase Inhibitors 9. Selective Inhibitors of Thromboxane Synthetase 10. Modulators of Eicosanoid actions 11. Classification of Prostanoid Receptors 12. Eicosanoid Receptor Antagonists 13. Leukotriene Antagonists 14. Regulation of Cyclic Nucleotide Metabolism in Human Platelets by Prostanoids 15. Opposite Effects of Prostaglandins on Human Platelets Mediated by Distinct Protein Kinases. Index.
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