Area of research
Biomedical Engineering · Biomaterials
Research interest
Research interests include Bone Tissue Engineering Materials, Silk-based biomaterials and applications, Periodontal Regeneration and Treatments, and Electrospun Nanofibers in Biomedical Applications.
Piezoelectric hydrogel with self-powered biomechanical stimulation enhances bone regeneration
Remodeling of the Intra‐Conduit Inflammatory Microenvironment to Improve Peripheral Nerve Regeneration with a Neuromechanical Matching Protein‐Based Conduit
Injectable Nanorobot-Hydrogel Superstructure for Hemostasis and Anticancer Therapy of Spinal Metastasis
Precipitation‐Based Silk Fibroin Fast Gelling, Highly Adhesive, and Magnetic Nanocomposite Hydrogel for Repair of Irregular Bone Defects
Biomimetic Structural Protein Based Magnetic Responsive Scaffold for Enhancing Bone Regeneration by Physical Stimulation on Intracellular Calcium Homeostasis
Pro-Inflammatory of PRDM1/SIRT2/NLRP3 Axis in Monosodium Urate-Induced Acute Gouty Arthritis
Piezoresistive MXene/Silk fibroin nanocomposite hydrogel for accelerating bone regeneration by Re-establishing electrical microenvironment
Engineering BPQDs/PLGA nanospheres-integrated wood hydrogel bionic scaffold for combinatory bone repair and osteolytic tumor therapy
Injectable Mussel‐Inspired highly adhesive hydrogel with exosomes for endogenous cell recruitment and cartilage defect regeneration
Injectable sericin based nanocomposite hydrogel for multi-modal imaging-guided immunomodulatory bone regeneration
Salt‐Assisted Toughening of Protein Hydrogel with Controlled Degradation for Bone Regeneration
<i>Bombyx mori</i> silk-based materials with implication in skin repair: Sericin versus regenerated silk fibroin
Fabrication of Air-Stable and Conductive Silk Fibroin Gels
Enhancing Mechanical Properties of Silk Fibroin Hydrogel through Restricting the Growth of β-Sheet Domains
Soy protein-based polyethylenimine hydrogel and its high selectivity for copper ion removal in wastewater treatment
Enhancing the Gelation and Bioactivity of Injectable Silk Fibroin Hydrogel with Laponite Nanoplatelets