Area of research
Pulmonary and Respiratory Medicine · Molecular Biology
Research interest
Research interests include Ferroptosis and cancer prognosis, RNA modifications and cancer, Cancer, Lipids, and Metabolism, and Computational Drug Discovery Methods.
Hepatic stellate cells control liver zonation, size and functions via R-spondin 3
GPX4 regulates lipid peroxidation and ferroptosis of stored red blood cells
Ferroptosis in health and disease
A guideline on the molecular ecosystem regulating ferroptosis
Ferroptosis regulates hemolysis in stored murine and human red blood cells
A cell state-specific metabolic vulnerability to GPX4-dependent ferroptosis in glioblastoma
Secreted Apoe rewires melanoma cell state vulnerability to ferroptosis
NRF2 controls iron homeostasis and ferroptosis through HERC2 and VAMP8
Identification of essential sites of lipid peroxidation in ferroptosis
Advances and prospects for the Human BioMolecular Atlas Program (HuBMAP)
Organ Mapping Antibody Panels: a community resource for standardized multiplexed tissue imaging
Discovery of Anticancer Agents of Diverse Natural Origin
Promotion of cholangiocarcinoma growth by diverse cancer-associated fibroblast subpopulations
An expanded universe of cancer targets
Characterization of a patient-derived variant of GPX4 for precision therapy
Cysteine depletion induces pancreatic tumor ferroptosis in mice
Energy-stress-mediated AMPK activation inhibits ferroptosis
Intercellular interaction dictates cancer cell ferroptosis via NF2–YAP signalling
Publisher Correction: Intercellular interaction dictates cancer cell ferroptosis via NF2–YAP signalling
Leveraging insights into cancer metabolism—a symposium report
FINO2 initiates ferroptosis through GPX4 inactivation and iron oxidation
Copper-Binding Small Molecule Induces Oxidative Stress and Cell-Cycle Arrest in Glioblastoma-Patient-Derived Cells
A Stem Cell-Based Screening Platform Identifies Compounds that Desensitize Motor Neurons to Endoplasmic Reticulum Stress
Ferroptosis: A Regulated Cell Death Nexus Linking Metabolism, Redox Biology, and Disease
Dependency of a therapy-resistant state of cancer cells on a lipid peroxidase pathway
Inhibition of neuronal ferroptosis protects hemorrhagic brain
Oxidized arachidonic and adrenic PEs navigate cells to ferroptosis
Peroxidation of polyunsaturated fatty acids by lipoxygenases drives ferroptosis
Regulated necrosis: disease relevance and therapeutic opportunities
Cell-Line Selectivity Improves the Predictive Power of Pharmacogenomic Analyses and Helps Identify NADPH as Biomarker for Ferroptosis Sensitivity