Area of research
Cell Biology · Biomedical Engineering
Research interest
Research interests include 3D Printing in Biomedical Research, Cellular Mechanics and Interactions, Cancer Cells and Metastasis, and Collagen: Extraction and Characterization.
Translational medicine for acute lung injury
Protocol for isolating and identifying small extracellular vesicles derived from human umbilical cord mesenchymal stem cells
Fiber alignment in 3D collagen networks as a biophysical marker for cell contractility
Visualization of microRNA therapy in cancers delivered by small extracellular vesicles
Fiber alignment in 3D collagen networks as a biophysical marker for cell contractility
Extracellular vesicles as delivery systems at nano-/micro-scale
Cytoskeletal tension actively sustains the migratory T‐cell synaptic contact
Dynamic filopodial forces induce accumulation, damage, and plastic remodeling of 3D extracellular matrices
Complex mechanics of the heterogeneous extracellular matrix in cancer
Characterization of the mechanical properties of cancer cells in 3D matrices in response to collagen concentration and cytoskeletal inhibitors
Protein corona of airborne nanoscale PM2.5 induces aberrant proliferation of human lung fibroblasts based on a 3D organotypic culture
Cytoskeletal tension actively sustains the migratory T cell synaptic contact
A process engineering approach to increase organoid yield
Integrated Analysis of Intracellular Dynamics of MenaINV Cancer Cells in a 3D Matrix
Interplay of active processes modulates tension and drives phase transition in self-renewing, motor-driven cytoskeletal networks
Single-Cell Migration in Complex Microenvironments: Mechanics and Signaling Dynamics
Multiscale mechanobiology: computational models for integrating molecules to multicellular systems
Elucidating mechanical transition effects of invading cancer cells with a subnucleus-scaled microfluidic serial dimensional modulation device