Area of research
Atomic and Molecular Physics, and Optics · Molecular Biology
Research interest
Research focused on Cell biology and Necroptosis, with related work in Endosome, Programmed cell death, CD1D. Notable publications include 'Control of CD1d-restricted antigen presentation and inflammation by sphingomyelin', 'Palmitoylation is required for TNF-R1 signaling', and 'The anticonvulsive Phenhydan® suppresses extrinsic cell death'.
AI modeling for outbreak prediction: A graph-neural-network approach for identifying vancomycin-resistant enterococcus carriers
Development and validation of a core genome multilocus sequence typing scheme for <i>Citrobacter freundii</i> : application in outbreak investigations and comparative analysis across the <i>Citrobacter</i> genus
Loss of ADAM15 prevents necroptosis induction by partial RIPK1 degradation due to enhanced TNF-R1 surface expression and basal caspase-8 activation
Subcellular localization of <scp>PD‐L1</scp> and cell‐cycle‐dependent expression of nuclear <scp>PD‐L1</scp> variants: implications for head and neck cancer cell functions and therapeutic efficacy
The S-palmitoylome and DHHC-PAT interactome of Drosophila melanogaster S2R+ cells indicate a high degree of conservation to mammalian palmitoylomes
TRAIL-receptor 2—a novel negative regulator of p53
Selective HSP90β inhibition results in TNF and TRAIL mediated HIF1α degradation
The S-palmitoylome and DHHC-PAT interactome of <i>Drosophila melanogaster</i> S2R+ cells indicate a high degree of conservation to mammalian palmitoylomes
Control of CD1d-restricted antigen presentation and inflammation by sphingomyelin
Palmitoylation is required for TNF-R1 signaling
TRAIL Induces Nuclear Translocation and Chromatin Localization of TRAIL Death Receptors
The anticonvulsive Phenhydan® suppresses extrinsic cell death
A toolbox for the immunomagnetic purification of signaling organelles
Differences and Similarities in TRAIL- and Tumor Necrosis Factor-Mediated Necroptotic Signaling in Cancer Cells
Lipid‐Labeling Facilitates a Novel Magnetic Isolation Procedure to Characterize Pathogen‐Containing Phagosomes