Area of research
Biophysics · Molecular Biology
Research interest
Research interests include Advanced Fluorescence Microscopy Techniques, Advanced Electron Microscopy Techniques and Applications, Advanced biosensing and bioanalysis techniques, and Cell Image Analysis Techniques.
Platelet-derived integrin- and tetraspanin-enriched tethers exacerbate severe inflammation.
Traction Force Microscopy with DNA FluoroCubes.
DNAM-1 mediates NK-cell activation and host-pathogen interaction via direct binding to fungal cell wall proteases.
Single-molecule localization microscopy reveals the molecular organization of endogenous membrane receptors.
Loss of GPRC5D enhances the proliferative capacity and competitive fitness of myeloma upon anti-GPRC5D immunotherapy.
Chlamydia trachomatis deploys sphingolipids for genome organisation
Characterizing the nanoscale organization of chemical synapses by expansion-Airyscan microscopy
Single-Step Expansion SMLM Enables Molecular-Resolution Imaging in Cells and Isolated Proteins
Nanoscale imaging of expanded cells and proteins with spontaneously blinking dyes
One-step nanoscale expansion microscopy reveals individual protein shapes.
Decoding the molecular interplay of CD20 and therapeutic antibodies with fast volumetric nanoscopy.
Functionalized Docetaxel Probes for Refined Visualization of Mitotic Spindles by Expansion Microscopy.
Resolving endogenous protein organization in cells with nanometer precision
Improving single molecule localisation microscopy reconstruction by extending the temporal context
Munc13-1 restoration mitigates presynaptic pathology in spinal muscular atrophy.
A Multifunctional Probe for Visualization of the Nanoscale Distribution of Cholesterol in Cells by Expansion Microscopy
Challenges and limitations of molecular resolution fluorescence imaging.
Towards improved particle averaging for single-molecule localization microscopy using geometric deep learning
NanTex enables computational multiplexing and phenotyping of organelles across super-resolution modalities
One-step nanoscale expansion microscopy reveals individual protein shapes
Interaction of human keratinocytes and nerve fiber terminals at the neuro-cutaneous unit.
Trifunctional sphingomyelin derivatives enable nanoscale resolution of sphingomyelin turnover in physiological and infection processes via expansion microscopy
Trifunctional sphingomyelin derivatives enable nanoscale resolution of sphingomyelin turnover in physiological and infection processes via expansion microscopy.
Continuous endosomes form functional subdomains and orchestrate rapid membrane trafficking in trypanosomes
PCNA as Protein-Based Nanoruler for Sub-10 nm Fluorescence Imaging.
Continuous endosomes form functional subdomains and orchestrate rapid membrane trafficking in trypanosomes.
The Role of Neutral Sphingomyelinase-2 (NSM2) in the Control of Neutral Lipid Storage in T Cells.
Continuous endosomes form functional subdomains and orchestrate rapid membrane trafficking in trypanosomes
Author Response: Continuous endosomes form functional subdomains and orchestrate rapid membrane trafficking in trypanosomes
Tumor-derived GDF-15 blocks LFA-1 dependent T cell recruitment and suppresses responses to anti-PD-1 treatment