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Dawoud MM, Jones DT, Chelala C, et al. (2022) Expression Profile of Myoepithelial Cells in DCIS: Do They Change From Protective Angels to Wicked Witches? Applied Immunohistochemistry & Molecular Morphology : Aimm |
Berger K, Pauwels E, Parkinson G, et al. (2021) Reduction of Progranulin-Induced Breast Cancer Stem Cell Propagation by Sortilin-Targeting Cyclotriazadisulfonamide (CADA) Compounds. Journal of Medicinal Chemistry |
Morotti M, Bridges E, Valli A, et al. (2019) Hypoxia-induced switch in SNAT2/SLC38A2 regulation generates endocrine resistance in breast cancer. Proceedings of the National Academy of Sciences of the United States of America |
Jones DT, Valli A, Haider S, et al. (2018) 3D Growth of Cancer Cells Elicits Sensitivity to Kinase Inhibitors but Not Lipid Metabolism Modifiers. Molecular Cancer Therapeutics. 18: 376-388 |
McIntyre A, Hulikova A, Ledaki I, et al. (2016) Disrupting hypoxia-induced bicarbonate transport acidifies tumor cells and suppresses tumor growth. Cancer Research |
Peck B, Schug ZT, Zhang Q, et al. (2016) Inhibition of fatty acid desaturation is detrimental to cancer cell survival in metabolically compromised environments. Cancer & Metabolism. 4: 6 |
Yang J, AlTahan A, Jones DT, et al. (2015) Estrogen receptor-α directly regulates the hypoxia-inducible factor 1 pathway associated with antiestrogen response in breast cancer. Proceedings of the National Academy of Sciences of the United States of America |
Valli A, Rodriguez M, Moutsianas L, et al. (2015) Hypoxia induces a lipogenic cancer cell phenotype via HIF1α-dependent and -independent pathways. Oncotarget. 6: 1920-41 |
Schug ZT, Peck B, Jones DT, et al. (2015) Acetyl-CoA synthetase 2 promotes acetate utilization and maintains cancer cell growth under metabolic stress. Cancer Cell. 27: 57-71 |
Jones DT, Lechertier T, Mitter R, et al. (2012) Gene expression analysis in human breast cancer associated blood vessels. Plos One. 7: e44294 |