| Preface | v |
| Lectures | |
| Research Leading to Nitric Oxide: the Importance of Accidental Findings | 1 |
| Signal Transduction with Nitric Oxide, Guanylyl Cyclase and Cyclic Guanosine Monophosphate | 5 |
| Mechanism of Oxygen Activation in the NO Synthases, and a Kinetic Model for Catalysis | 23 |
| The Role of Tetrahydrobiopterin in Nitric Oxide Synthesis | 27 |
| The Biological Chemistry of Nitric Oxide and Peroxynitrite | 35 |
| Kinetics of Nitric Oxide and Superoxide Release in the Brain during Ischemia/Reperfusion | 44 |
| Endogenous Inhibition of NOS and the ADMA/DDAH Pathway | 53 |
| Role of Endothelial Nitric Oxide in Pleiotropic Action of Cardiovascular Drugs: Nebivolol | 57 |
| Role of Nitric Oxide in Cardiac Transplant Rejection: Documentation by EPR Spectroscopy and Other Techniques | 71 |
| Role of Nitric Oxide in Antiarrhythmic Effects of Ischaemic Preconditioning | 80 |
| Nitric Oxide and The Developing Heart | 92 |
| Oxidized Lipids and Platelet Activation: Interaction with Nitric Oxide | 100 |
| Effect of Oxidized LDL on Nitrotyrosines Production in Endothelial Cells | 108 |
| Nitric Oxide and Circulatory Shock: An Update | 117 |
| Role of Inducible Nitric Oxide Syntethase and Reactive Oxygen Species in Zymosan--Induced Shock | 126 |
| Nitric Oxide--A Safeguard of Pulmonary Microcirculation in Early Endotoxaemia | 137 |
| Posters | |
| Therapeutic Delivery of the Scaffolding Domain Inhibits Nitric Oxide Synthesis and Reduces Inflammation | 149 |
| Detection of the Antioxidant Activity of Flavonoids by Using a Superoxide Sensor | 168 |
| Nitric Oxide Reverses the Inhibition of Endocytosis Induced by Tumour Necrosis Factor--[alpha] in Dendritic Cells | 181 |
| No Effect of Elevated Glucose on the Generation of Endothelium--Derived Nitric Oxide in Rabbit Aorta | 186 |
| Apoptotic Process Modulated by Nitric Oxide in Chronic B-Cell Lymphocytic Leukemia | 188 |
| NO-Modulating Selective [beta]-Blocker Nebivolol: Does It Improve Arterial Compliance in Insulin-Resistant Hypertensives? | 190 |
| Vitamin C and Lipoic Acid Lower Oxidant Production in Cultured HAEC: Implications for Age-Related Endothelial Dysfunction | 192 |
| The Features of NO Metabolism under Organic Nitrates Biotransformation in Patients with Ischemic Heart Disease | 195 |
| Genetic Epidemiology of Cardiovascular Diseases in Daghestan Highland Isolates | 197 |
| The Role of NO in Altered Sensitivity of Vascular Preparations to Drugs in Diabetic Animals | 199 |
| The Effects of a HMG CoA Reductase Inhibitor, Atorvastatin on Human Isolated Bypass Graft Materials | 201 |
| Ischaemic Preconditioning of Coronary Vasculature | 203 |
| Modulatory Role of Nitric Oxide on the PAF-Induced Cardiopulmonary Effects: Interaction between Nitric Oxide Synthase and Cyclooxygenase Pathways | 204 |
| Characterization of NO Spin Traps: EPR Properties and Trapping Efficiency | 206 |
| Bradykinin as a Strong Inducer of COX-2 mRNA and a Weak Inducer of NOS-2 mRNA in Cultured Endothelial Cells from Human Umbilical Vein | 207 |
| Modulation of Nitric Oxide Production by Lysophosphatidylcholine in Human Endothelial Cells | 210 |
| The Role of Nitric Oxide, Prostacyclin and Melatonin in Aspirin-Sensitive Asthma | 211 |
| Mechanisms of Regulation of Neurotransmitter Release by Nitric Oxide | 212 |
| LPS-Induced NO Production in Human T84 Intestinal Epithelial Cells - Characterization and Pharmacological Control | 216 |
| Modified Method for Capillary Electrophoresis to Determine Nitric Oxide Correlated Nitrate in Tissue Homogenates | 217 |
| Role of Nitric Oxide on Exercise-Induced Changes in Active Subjects: Effects of Physical Training and Acute Exercise | 221 |
| Author Index | 228 |