Area of research
Oncology · Molecular Biology
Research interest
Research interests include Cancer Cells and Metastasis, Cancer Genomics and Diagnostics, Gene Regulatory Network Analysis, and Single-cell and spatial transcriptomics.
Exploring the role of EMT in ovarian cancer progression using a multiscale mathematical model
The exostosin glycosyltransferase 1/STAT3 axis is a driver of breast cancer aggressiveness
Perspectives on polarity – exploring biological asymmetry across scales
Exploring the role of EMT in Ovarian Cancer Progression: Insights from a multiscale mathematical model
Modeling collective cell behavior in cancer: Perspectives from an interdisciplinary conversation
Emerging perspectives on growth factor metabolic relationships in the ovarian cancer ascites environment
Calcium signaling induces a partial EMT
Epithelial-to-Mesenchymal Transition Enhances Cancer Cell Sensitivity to Cytotoxic Effects of Cold Atmospheric Plasmas in Breast and Bladder Cancer Systems
Comparative Study of Transcriptomics-Based Scoring Metrics for the Epithelial-Hybrid-Mesenchymal Spectrum
NRF2 activates a partial epithelial-mesenchymal transition and is maximally present in a hybrid epithelial/mesenchymal phenotype
Spleen Tyrosine Kinase–Mediated Autophagy Is Required for Epithelial–Mesenchymal Plasticity and Metastasis in Breast Cancer
Differential Contributions of Pre- and Post-EMT Tumor Cells in Breast Cancer Metastasis
Chronic Obstructive Pulmonary Disease and Lung Cancer: Underlying Pathophysiology and New Therapeutic Modalities
Interconnected feedback loops among ESRP1, HAS2, and CD44 regulate epithelial-mesenchymal plasticity in cancer
Interconnected feedback loops among ESRP1, HAS2, and CD44 regulate epithelial-mesenchymal plasticity in cancer
Stability of the hybrid epithelial/mesenchymal phenotype
Coupling the modules of EMT and stemness: A tunable ‘stemness window’ model
OVOL guides the epithelial-hybrid-mesenchymal transition
Tristability in Cancer-Associated MicroRNA-TF Chimera Toggle Switch