Area of research
Biomedical Engineering · Cell Biology
Research interest
Research interests include 3D Printing in Biomedical Research, Cellular Mechanics and Interactions, Nerve injury and regeneration, and Cancer Cells and Metastasis.
Endothelial-secreted Endocan activates PDGFRA and regulates vascularity and spatial phenotype in glioblastoma
Microenvironmental stiffness induces metabolic reprogramming in glioblastoma
Glioblastoma Spheroid Invasion through Soft, Brain‐Like Matrices Depends on Hyaluronic Acid–CD44 Interactions
Clinical Trials Targeting Secondary Damage after Traumatic Spinal Cord Injury
Molecular weight of hyaluronic acid crosslinked into biomaterial scaffolds affects angiogenic potential
Brain-on-a-chip: Recent advances in design and techniques for microfluidic models of the brain in health and disease
Matrix stiffness mediates pancreatic cancer chemoresistance through induction of exosome hypersecretion in a cancer associated fibroblasts-tumor organoid biomimetic model
A molecular interactome of the glioblastoma perivascular niche reveals integrin binding sialoprotein as a mediator of tumor cell migration
Engineering Tissues of the Central Nervous System: Interfacing Conductive Biomaterials with Neural Stem/Progenitor Cells
Regenerative Therapies for Spinal Cord Injury
Bioengineered scaffolds for 3D culture demonstrate extracellular matrix-mediated mechanisms of chemotherapy resistance in glioblastoma
A 3D Magnetic Hyaluronic Acid Hydrogel for Magnetomechanical Neuromodulation of Primary Dorsal Root Ganglion Neurons
Hyaluronic-Acid Based Hydrogels for 3-Dimensional Culture of Patient-Derived Glioblastoma Cells
Brain-Mimetic 3D Culture Platforms Allow Investigation of Cooperative Effects of Extracellular Matrix Features on Therapeutic Resistance in Glioblastoma
Integrating the Glioblastoma Microenvironment Into Engineered Experimental Models
Hyaluronic acid and neural stem cells: implications for biomaterial design