Area of research
Biomedical Engineering · Biomaterials
Research interest
Research focused on Nanotechnology and Tissue engineering, with related work in PLGA, Mesenchymal stem cell, Cornea. Notable publications include 'Harnessing 4D Printing Bioscaffolds for Advanced Orthopedics', 'Injectable nanofiber-reinforced bone cement with controlled biodegradability for minimally-invasive bone regeneration', and 'Injectable Biomimetic Hydrogel Guided Functional Bone Regeneration by Adapting Material Degradation to Tissue Healing'.
Injectable Biomimetic Hydrogel Guided Functional Bone Regeneration by Adapting Material Degradation to Tissue Healing
Redox-active polyphenol nanoparticles deprive endogenous glutathione of electrons for ROS generation and tumor chemodynamic therapy
Fabrication of magnesium-doped porous polylactic acid microsphere for bone regeneration.
Harnessing 4D Printing Bioscaffolds for Advanced Orthopedics
Injectable nanofiber-reinforced bone cement with controlled biodegradability for minimally-invasive bone regeneration
Electrical Signal Initiates Kinetic Assembly of Collagen to Construct Optically Transparent and Geometry Customized Artificial Cornea Substitutes
A novel strategy for tumor therapy: targeted, PAA-functionalized nano-hydroxyapatite nanomedicine
Recombinant human BMP-2 accelerates the migration of bone marrow mesenchymal stem cells<i>via</i>the CDC42/PAK1/LIMK1 pathway<i>in vitro</i>and<i>in vivo</i>
Development of Biodegradable Bone Graft Substitutes Using 3D Printing
Synthesis and magnetic properties of Fe2O3–TiO2 nano-composite particles using pulsed laser gas phase evaporation–liquid phase collecting method
Influence of Solvents on the Rheological Behavior and Drag Reduction Performance of Polymer Drag Reduction Agent
Contemporary Chemical Industry 2012cited by 0position: first