Therapeutic Applications of Nitric Oxide in Cancer and Inflammatory Disorders
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Therapeutic Applications of Nitric Oxide in Cancer and Inflammatory Disorders
Third International Conference on Therapeutic Application of Nitric Oxide in Cancer and Inflammatory Disorders
Rapozzi, Valentina; Xodo, Luigi; Bonavida, Benjamin
Elsevier Science Publishing Co Inc
11/2024
300
Mole
Inglês
9780443223549
Pré-lançamento - envio 15 a 20 dias após a sua edição
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Part I: General introduction 1. Pathogenic and therapeutic management of cardiac surgery-associated acute kidney injury: Role of nitric oxide biological pathways. Part II: Nitric oxide and cancer 2. The emerging role of dimethylarginine dimethylaminohydrolase 2 (DDAH2) in regulating vasculogenic mimicry in cancer Part III: Nitric oxide reactions in the cells and models to check its biological properties 3. Decoding S-nitrosylation: Theoretical aspects and analytical approaches 4. Preclinical Models to Assess the Pharmacological Properties of NO Derivatives Part IV: Nitric Oxide and neurodegeneration 5. NO-mediated neuroinflammatory pathways as treatment targets in neurodegeneration Part V: Nitric oxide and therapeutics 6. Role of Nitric oxide in Gemcitabine resistance in pancreatic cancer cells 7. Exploring the dual role of nitric oxide in glioblastoma: Therapeutic implications 8. Nitric oxide-donating systems and their potential in shaping tumor immunoregulation 9. Control of nitric oxide synthase 2: Role of NRF2-regulated distal enhancer 10. Nitric oxide in tumour biology: From stemness to metabolic reprogramming 11. Impact of nitric oxide on hemeprotein maturation and its relevance to cancer and pulmonary diseases Part VI: Educational session 12. Using AI to discover new cancer therapies: "Artificial intelligence (AI), the ability of machines to learn from new input, is a broad term for a range of computing methods". AI is changing drug discovery
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<p>Cancer; nitric oxide; inflammatory disease; NO donors; NO inhibitors</p>
Part I: General introduction 1. Pathogenic and therapeutic management of cardiac surgery-associated acute kidney injury: Role of nitric oxide biological pathways. Part II: Nitric oxide and cancer 2. The emerging role of dimethylarginine dimethylaminohydrolase 2 (DDAH2) in regulating vasculogenic mimicry in cancer Part III: Nitric oxide reactions in the cells and models to check its biological properties 3. Decoding S-nitrosylation: Theoretical aspects and analytical approaches 4. Preclinical Models to Assess the Pharmacological Properties of NO Derivatives Part IV: Nitric Oxide and neurodegeneration 5. NO-mediated neuroinflammatory pathways as treatment targets in neurodegeneration Part V: Nitric oxide and therapeutics 6. Role of Nitric oxide in Gemcitabine resistance in pancreatic cancer cells 7. Exploring the dual role of nitric oxide in glioblastoma: Therapeutic implications 8. Nitric oxide-donating systems and their potential in shaping tumor immunoregulation 9. Control of nitric oxide synthase 2: Role of NRF2-regulated distal enhancer 10. Nitric oxide in tumour biology: From stemness to metabolic reprogramming 11. Impact of nitric oxide on hemeprotein maturation and its relevance to cancer and pulmonary diseases Part VI: Educational session 12. Using AI to discover new cancer therapies: "Artificial intelligence (AI), the ability of machines to learn from new input, is a broad term for a range of computing methods". AI is changing drug discovery
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.