Area of research
Biomedical Engineering · Biomaterials
Research interest
Research interests include 3D Printing in Biomedical Research, Electrospun Nanofibers in Biomedical Applications, Gold and Silver Nanoparticles Synthesis and Applications, and Cellular Mechanics and Interactions.
Neurogenic Cell Behavior in 3D Culture Enhanced Within a Highly Compliant Synthetic Hydrogel Platform Formed via Competitive Crosslinking.
Detection of Fluorescent Protein Mechanical Switching in Cellulo
Synthetic Hydrogels with Entangled Neutrophil Extracellular Traps Influence Tumor Progression in MDA-MB-231 Cells
Tunable PEG Hydrogels for Discerning Differential Tumor Cell Response to Biomechanical Cues.
Adding Dynamic Biomolecule Signaling to Hydrogel Systems via Tethered Photolabile Cell-Adhesive Proteins.
Reductionist Three-Dimensional Tumor Microenvironment Models in Synthetic Hydrogels.
Synthetic ECM: Bioactive Synthetic Hydrogels for 3D Tissue Engineering.
Chemically Orthogonal Protein Ligation Domains for Independent Control of Hydrogel Modification with Adhesive Ligands and Growth Factors.
Gold nanoshell-localized photothermal ablation of prostate tumors in a clinical pilot device study
Cell-Compatible, Site-Specific Covalent Modification of Hydrogel Scaffolds Enables User-Defined Control over Cell-Material Interactions.
Cancer-Associated Fibroblasts Induce a Collagen Cross-link Switch in Tumor Stroma
3D Biofabrication Strategies for Tissue Engineering and Regenerative Medicine
Immobilization of Cell-Adhesive Laminin Peptides in Degradable PEGDA Hydrogels Influences Endothelial Cell Tubulogenesis
Three‐Dimensional Biomimetic Patterning in Hydrogels to Guide Cellular Organization
Rapid Heterotrophic Ossification with Cryopreserved Poly(ethylene glycol-) Microencapsulated BMP2-Expressing MSCs