Area of research
Molecular Biology · Cancer Research
Research interest
Research interests include Cancer research, Biology, Ovarian cancer, Metastasis, Cell biology, and GPX3.
Loss of STIM2, but not of STIM1, drives colorectal cancer metastasis through metabolic reprogramming and the ATF4 ER stress pathway
Carcinoma-associated mesenchymal stem cells promote ovarian cancer heterogeneity and metastasis through mitochondrial transfer
Stress response regulation of mRNA translation: Implications for antioxidant enzyme expression in cancer
Drp1 splice variants regulate ovarian cancer mitochondrial dynamics and tumor progression
GPX3 supports ovarian cancer tumor progression in vivo and promotes expression of GDF15
Glycosaminoglycan modifications of betaglycan regulate ectodomain shedding to fine-tune TGF-β signaling responses in ovarian cancer
Reciprocal SOX2 regulation by SMAD1-SMAD3 is critical for anoikis resistance and metastasis in cancer
Emerging perspectives on growth factor metabolic relationships in the ovarian cancer ascites environment
HuR-dependent SOD2 protein synthesis is an early adaptation to anchorage-independence
PVT1 is a stress-responsive lncRNA that drives ovarian cancer metastasis and chemoresistance
Hypoxia-induced inhibin promotes tumor growth and vascular permeability in ovarian cancers
Context-dependent activation of SIRT3 is necessary for anchorage-independent survival and metastasis of ovarian cancer cells
GPx3 supports ovarian cancer progression by manipulating the extracellular redox environment
TAK1 activation of alpha-TAT1 and microtubule hyperacetylation control AKT signaling and cell growth