Area of research
Cell Biology · Biomedical Engineering
Research interest
Research interests include Cellular Mechanics and Interactions, 3D Printing in Biomedical Research, Microtubule and mitosis dynamics, and Sarcoma Diagnosis and Treatment.
Membrane tension induces F-actin reorganization and flow in a biomimetic model cortex
Pulsatile contractions and pattern formation in excitable actomyosin cortex
Force-dependent intercellular adhesion strengthening underlies asymmetric adherens junction contraction
Mechanical feedback promotes bacterial adaptation to antibiotics
The Actin Cytoskeleton as an Active Adaptive Material
RhoA Mediates Epithelial Cell Shape Changes via Mechanosensitive Endocytosis
Wound healing coordinates actin architectures to regulate mechanical work
Mechanosensitive Junction Remodeling Promotes Robust Epithelial Morphogenesis
Filament Nucleation Tunes Mechanical Memory in Active Polymer Networks
Nonequilibrium phase diagrams for actomyosin networks
Force localization modes in dynamic epithelial colonies
Regulated Capture of Vκ Gene Topologically Associating Domains by Transcription Factories
Liquid behavior of cross-linked actin bundles
A Versatile Framework for Simulating the Dynamic Mechanical Structure of Cytoskeletal Networks
Filament rigidity and connectivity tune the deformation modes of active biopolymer networks
Biphasic growth dynamics control cell division in Caulobacter crescentus
Cellular Contraction and Polarization Drive Collective Cellular Motion
Disordered actomyosin networks are sufficient to produce cooperative and telescopic contractility
Structural basis for oligomerization and glycosaminoglycan binding of CCL5 and CCL3
Propagating Stress Waves During Epithelial Expansion
Active Viscoelastic Matter: From Bacterial Drag Reduction to Turbulent Solids
Geometry Regulates Traction Stresses in Adherent Cells