Area of research
Biomedical Engineering · Rheumatology
Research interest
Research interests include Bone Tissue Engineering Materials, Osteoarthritis Treatment and Mechanisms, Electrospun Nanofibers in Biomedical Applications, and Nanoplatforms for cancer theranostics.
Dynamic adaptive coassembled sericin protein orchestrating stem cell development for nucleus pulposus regeneration
Multi-stage assembled <i>Lactobacillus reuteri</i>-capsule patch for sustained antibacterial therapy.
Polycationic silk fibroin chelating nano-hydroxyapatite promotes angiogenesis for burn wound healing.
Self-Assembled EGCG Nanoparticles Achieved Long-Term ROS Scavenging to Delay Osteoarthritis Progression.
Dynamic adaptive coassembled sericin protein orchestrating stem cell development for nucleus pulposus regeneration.
Constructing highly bioactive and tough polyurethane bone adhesives by covalently integrating nanohydroxyapatite
Hyaluronan regulates the assembly structure and biofunction of polycationic silk fibroin to boost microfracture
Spatially programmed hydroxyapatite in hierarchically assembled scaffold self-adapts osteogenic progression
Black phosphorus nanosheets boost mitochondrial oxidative phosphorylation improving immunotherapy outcomes.
Activating Mitochondrial Complex I by Polyphenol Nanoparticle to Inhibit Hypoxia-Inducible Factor-1 Subunit α for Immunotherapy.
Inorganic Nanomaterials for Osteoarthritis: From Delivery Vehicles to Therapeutic Agents.
A Shape-Recovery Polycationic Fibroin for Hemostasis-Regeneration Transition by Recapitulating Natural Coagulation Networks.
Actively Infiltrative Micro/Nanochannels Propel Cell Migration-to-Mechanoactivation Transition for Centralized Osteogenesis.
Two-Dimensional Inorganic Materials for Skin Wound Healing: Multifunctionality, Challenges, and Opportunities.
Polyphenol Hyaluronic Acid Mediates Cascade Regulation of Collagen Assembly/Mineralization for Bone Regeneration.
Three-dimensional cell spheroid technology: Recent advances and emerging strategies in cartilage regeneration
Anti-swelling and self-activating artificial proteoglycan assemblies as cartilaginous implant for post-microfracture healing.
The role of integrin αvβ3 in biphasic calcium phosphate ceramics mediated M2 Macrophage polarization and the resultant osteoinduction
Molecular co-assembled strategy tuning protein conformation for cartilage regeneration.
Engineering Injectable Coassembled Hydrogel by Photothermal Driven Chitosan-Stabilized MoS<sub>2</sub> Nanosheets for Infected Wound Healing.
Hierarchical Scaffold with Directional Microchannels Promotes Cell Ingrowth for Bone Regeneration.
Engineered Microchannel Scaffolds with Instructive Niches Reinforce Endogenous Bone Regeneration by Regulating CSF-1/CSF-1R Pathway.
Porous gradient hydrogel promotes skin regeneration by angiogenesis
Injectable immunoregulatory hydrogels sequentially drive phenotypic polarization of macrophages for infected wound healing
A facile Immunoregulatory Constructional Design by Proanthocyanidin Optimizing Directional Chitosan Microchannel.
An injectable photocuring silk fibroin-based hydrogel for constructing an antioxidant microenvironment for skin repair.
Cisplatin-based miRNA delivery strategy inspired by the circCPNE1/miR-330-3p pathway for oral squamous cell carcinoma
Hollow CuS immobilized in polysaccharide hydrogel promotes photothermally-driven vascularization
Hyaluronan Scaffold Decorated with Bifunctional Peptide Promotes Wound Healing via Antibacterial and Anti-Inflammatory.
Hollow Copper Sulfide Photothermal Nanodelivery Platform Boosts Angiogenesis of Diabetic Wound by Scavenging Reactive Oxygen Species.