Area of research
Biophysics · Nephrology
Research interest
Research focused on Cell biology and Microscopy, with related work in Neural crest, STED microscopy, Mesenchymal stem cell. Notable publications include 'Glial origin of mesenchymal stem cells in a tooth model system', 'A molecular mechanism explaining albuminuria in kidney disease', and 'LytA, Major Autolysin of Streptococcus pneumoniae, Requires Access to Nascent Peptidoglycan'.
Deconwolf enables high-performance deconvolution of widefield fluorescence microscopy images
Quantifying Fluorescence Lifetime Responsiveness of Environment-Sensitive Probes for Membrane Fluidity Measurements
Deep learning–based segmentation and quantification of podocyte foot process morphology suggests differential patterns of foot process effacement across kidney pathologies
Identification of a discrete subpopulation of spinal cord ependymal cells with neural stem cell properties
A molecular mechanism explaining albuminuria in kidney disease
High-Resolution Imaging of Tumor Spheroids and Organoids Enabled by Expansion Microscopy
Active and inactive β1 integrins segregate into distinct nanoclusters in focal adhesions
Extracellular nanovesicles released from the commensal yeast Malassezia sympodialis are enriched in allergens and interact with cells in human skin
Cerium oxide nanoparticles inhibit differentiation of neural stem cells
Confocal super-resolution imaging of the glomerular filtration barrier enabled by tissue expansion
Analysis of neural crest–derived clones reveals novel aspects of facial development
Profilin connects actin assembly with microtubule dynamics
Super-resolution microscopy reveals γ-secretase at both sides of the neuronal synapse
An automated method measures variability in P-glycoprotein and ABCG2 densities across brain regions and brain matter
Super-resolution stimulated emission depletion imaging of slit diaphragm proteins in optically cleared kidney tissue
Glial origin of mesenchymal stem cells in a tooth model system
LytA, Major Autolysin of Streptococcus pneumoniae, Requires Access to Nascent Peptidoglycan