<p>.-1 Basics of Sphingolipid Metabolism and Signaling</p><p>.-2 Role of Sphingolipids in Hematological Malignancies: Lymphoproliferative disorders</p><p>.-3 Role of Sphingolipids in Hematological Malignancies: Myeloproliferative Disorders</p><p>.-4 Sphingolipids as Mediators of Breast Cancer Progression, Metastasis, Response, and Resistance to Chemotherapy</p><p>.-5 Role of Sphingolipids in Non-Melanoma Skin Cancer</p><p></p><p></p><p></p><p>.-6 Dysregulation of Sphingolipid Metabolism in Melanoma: Roles in Pigmentation, Cell Survival and Tumor Progression</p><p>.-7 Colon Cancer: the Role of Sphingolipid Metabolic Enzymes</p><p>.-8 Dietary Sphingolipids in Colon Cancer Prevention</p><p>.-9 Role of Sphingolipids in Liver Cancer</p><p>.-10 Pancreatic Cancer and Sphingolipids</p><p>.-11 Sphingolipids in the Pathogenesis of Head and Neck and Lung Cancers: Translational Aspects for Therapy and Biomarker Development</p><p>.-12 The Role and Function of Sphingolipids in Glioblastoma Multiforme</p><p>.-13 Systems Biology Approaches</p> for Studying Sphingolipid Signaling<p></p><p>.-14 Qualitative and Quantitative Measurements of Sphingolipids by Mass Spectrometry</p><p>.-15 Detection and Distribution of Sphingolipids in Tissue by FTICR MALDI-Imaging Mass Spectrometry</p><p>.-16 Sphingoproteomics: Proteomic Strategies to Examine Sphingolipid Biology</p><p>.-17 Utilization of Caged Ceramide and Ceramide 1-Phosphate Analogs for Monitoring Cellular Events after Photoactivation</p><p>.-18 Chemotherapy and Sphingolipid Metabolism</p><p>.-19 Chemical Probes of Sphingolipid Metabolizing Enzymes</p><p>.-20 Use of Fenretinide to Increase Cytotoxic Dihydroceramides as a Novel Cancer Chemotherapeutic Approach</p><p></p><p></p><p></p><p></p>