33 results on '"Pacheco, Maria Pires"'
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2. DCcov: Repositioning of Drugs and Drug Combinations for SARS-CoV-2 Infected Lung through Constraint-Based Modelling
3. Metabolic modelling-based in silico drug target prediction identifies six novel repurposable drugs for melanoma
4. Drug Target Prediction Using Context-Specific Metabolic Models Reconstructed from rFASTCORMICS
5. AMBRA1 levels predict resistance to MAPK inhibitors in melanoma.
6. Towards the Integration of Metabolic Network Modelling and Machine Learning for the Routine Analysis of High-Throughput Patient Data
7. Fast reconstruction of compact context-specific metabolic networks via integration of microarray data
8. Fast Reconstruction of Compact Context-Specific Metabolic Network Models
9. Metabolic models predict fotemustine and the combination of eflornithine/rifamycin and adapalene/cannabidiol for the treatment of gliomas.
10. Ambra1 modulates the tumor immune microenvironment and response to PD-1 blockade in melanoma
11. Ambra1 modulates the tumor immune microenvironment and response to PD-1 blockade in melanoma
12. The FASTCORE Family: For the Fast Reconstruction of Compact Context-Specific Metabolic Networks Models
13. scFASTCORMICS: A Contextualization Algorithm to Reconstruct Metabolic Multi-Cell Population Models from Single-Cell RNAseq Data
14. Review of Current Human Genome-Scale Metabolic Models for Brain Cancer and Neurodegenerative Diseases
15. Bruceine D Identified as a Drug Candidate against Breast Cancer by a Novel Drug Selection Pipeline and Cell Viability Assay
16. DCcov: Repositioning of drugs and drug combinations for SARS-CoV-2 infected lung through constraint-based modeling
17. TESTING INFORMED SIR BASED EPIDEMIOLOGICAL MODEL FOR COVID-19 IN LUXEMBOURG
18. Towards the routine use of in silico screenings for drug discovery using metabolic modelling
19. The Power of LC-MS Based Multiomics: Exploring Adipogenic Differentiation of Human Mesenchymal Stem/Stromal Cells
20. Towards the network-based prediction of repurposed drugs using patient-specific metabolic models
21. Identifying and targeting cancer-specific metabolism with network-based drug target prediction
22. Integrated In Vitro and In Silico Modeling Delineates the Molecular Effects of a Synbiotic Regimen on Colorectal-Cancer-Derived Cells
23. Fast recontruction of compact context-specific network models
24. Integrated in Vitro and in Silico Modelling Delineates the Molecular Effects of a Symbiotic Regimen on Colorectal Cancer-Derived Cells
25. Thesis Maria Pires Pacheco
26. Towards improved genome-scale metabolic network reconstructions: unification, transcript specificity and beyond
27. Integrated metabolic modelling reveals cell-type specific epigenetic control points of the macrophage metabolic network
28. Fast Reconstruction of Compact Context-Specific Metabolic Network Models
29. Towards improved genome-scale metabolic network reconstructions: unification, transcript specificity and beyond.
30. Integrated In Vitroand In SilicoModeling Delineates the Molecular Effects of a Synbiotic Regimen on Colorectal-Cancer-Derived Cells
31. Epigenetic control of metabolic identity across cell types.
32. Drug Target Prediction Using Context-Specific Metabolic Models Reconstructed from rFASTCORMICS.
33. The FASTCORE Family: For the Fast Reconstruction of Compact Context-Specific Metabolic Networks Models.
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