Area of research
Biomedical Engineering · Cell Biology
Research interest
Research interests include Cellular Mechanics and Interactions, Cell Adhesion Molecules Research, Microfluidic and Capillary Electrophoresis Applications, and Microfluidic and Bio-sensing Technologies.
Pre-complexation of talin and vinculin without tension is required for efficient nascent adhesion maturation
Amyloidogenic Processing of Amyloid Precursor Protein Drives Stretch-Induced Disruption of Axonal Transport in hiPSC-Derived Neurons
Cellular memory in eukaryotic chemotaxis depends on the background chemoattractant concentration
Enhanced Dendritic Actin Network Formation in Extended Lamellipodia Drives Proliferation in Growth-Challenged Rac1P29S Melanoma Cells
Self-induced mechanical stress can trigger biofilm formation in uropathogenic Escherichia coli
Blood flow-induced Notch activation and endothelial migration enable vascular remodeling in zebrafish embryos
Vimentin fibers orient traction stress
Effect of flow and peristaltic mixing on bacterial growth in a gut-like channel
Neutrophil recruitment limited by high-affinity bent β2 integrin binding ligand in cis
Gαi2 and Gαi3 Differentially Regulate Arrest from Flow and Chemotaxis in Mouse Neutrophils
Traction microscopy to identify force modulation in subresolution adhesions
Functional Hierarchy of Redundant Actin Assembly Factors Revealed by Fine-Grained Registration of Intrinsic Image Fluctuations
Cellular memory in eukaryotic chemotaxis
Microfluidic experiments reveal that antifreeze proteins bound to ice crystals suffice to prevent their growth
The nucleus of endothelial cell as a sensor of blood flow direction
‘Slings’ enable neutrophil rolling at high shear
Incoherent Feedforward Control Governs Adaptation of Activated Ras in a Eukaryotic Chemotaxis Pathway
Innate Non-Specific Cell Substratum Adhesion