20 results on '"Huang, Sing-Han"'
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2. An integrated systematic approach for investigating microcurrent electrical nerve stimulation (MENS) efficacy in STZ-induced diabetes mellitus
3. Convolutional neural network for human cancer types prediction by integrating protein interaction networks and omics data
4. CoMI: consensus mutual information for tissue-specific gene signatures
5. Identification of the HNSC88 Molecular Signature for Predicting Subtypes of Head and Neck Cancer
6. Membrane protein-regulated networks across human cancers
7. In silico identification and biological evaluation of a selective MAP4K4 inhibitor against pancreatic cancer.
8. Silmitasertib, a casein kinase 2 inhibitor, induces massive lipid droplet accumulation and nonapoptotic cell death in head and neck cancer cells.
9. In silico prediction of immune-escaping hot spots for future COVID-19 vaccine design
10. A homologous mapping method for three-dimensional reconstruction of protein networks reveals disease-associated mutations
11. Silmitasertib, a casein kinase 2 inhibitor, induces massive lipid droplet accumulation and nonapoptotic cell death in head and neck cancer cells
12. Additional file 1 of CoMI: consensus mutual information for tissue-specific gene signatures
13. Whole-Blood 3-Gene Signature as a Decision Aid for Rifapentine-based Tuberculosis Preventive Therapy
14. An integrated genome-wide model for hookah constituents-gene-pathway-disease relationships
15. FooDisNET: a database of food-compound-protein-disease associations
16. An Integrated Genomic Strategy to Identify CHRNB4 as a Diagnostic/Prognostic Biomarker for Targeted Therapy in Head and Neck Cancer
17. Omics-based Investigation of Diet-induced Obesity Synergized with HBx, Src, and p53 Mutation Accelerating Hepatocarcinogenesis in Zebrafish Model
18. Identification of the PCA29 gene signature as a predictor in prostate cancer
19. Identification of the PCa28 Gene Signature as a Predictor in Prostate Cancer
20. Reconstructing Genome-Wide Protein–Protein Interaction Networks Using Multiple Strategies with Homologous Mapping
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