Area of research
Biomedical Engineering · Biomaterials
Research interest
Research interests include Angiogenesis, Wound healing, Umbilical vein, Chemistry, Medicine, and Octacalcium phosphate.
Orally administered hydrogel containing polyphenol@halloysite clay for probiotic delivery and treatment of inflammatory bowel disease
NIR-II responsive multi-functional scaffold with PTT/CDT/CT/MHT and ion synergistic effects for all-in-one treatment of osteosarcoma-associated bone defects
3D printing of chitosan hydrogel reinforced with tubular nanoclay for hemostasis and infected wound healing
Chitin whisker/chitosan liquid crystal hydrogel assisted scaffolds with bone-like ECM microenvironment for bone regeneration
A Tough Janus Hydrogel Patch with Strong Wet Adhesion and Self-Debonding for Oral Ulcer Treatment
Abundant nucleation sites-available liquid crystal hydrogel mimics bone ECM mineralization to boost osteogenesis
Creating a bionic scaffold via light-curing liquid crystal ink to reveal the role of osteoid-like microenvironment in osteogenesis
Multiple‐Effect Combined Hydrogels: “Temporal Regulation” Treatment of Osteosarcoma‐Associated Bone Defects with Switchable Hyperthermia and Bioactive Agents
Fabrication of 3D printed trabecular bone-templated scaffolds modified with rare earth europium (III)-based complex for enhancing mitochondrial function in bone regeneration
A Wood‐Derived Periosteum for Spatiotemporal Drug Release: Boosting Bone Repair through Anisotropic Structure and Multiple Functions
Preparation of chitin/MXene/poly(L-arginine) composite aerogel spheres for specific adsorption of bilirubin
Bone ECM-inspired biomineralization chitin whisker liquid crystal hydrogels for bone regeneration
Modulating of Bouligand Structure and Chirality Constructed Bionically Based on the Self-Assembly of Chitin Whiskers
Highly Elastic and Anisotropic Wood‐Derived Composite Scaffold with Antibacterial and Angiogenic Activities for Bone Repair
Highly anisotropic and elastic cellulosic scaffold guiding cell orientation and osteogenic differentiation via topological and mechanical cues
3D Printing Drug-Free Scaffold with Triple-Effect Combination Induced by Copper-Doped Layered Double Hydroxides for the Treatment of Bone Defects
A highly-stretchable and adhesive hydrogel for noninvasive joint wound closure driven by hydrogen bonds
Bone ECM-like 3D Printing Scaffold with Liquid Crystalline and Viscoelastic Microenvironment for Bone Regeneration
Drug-Loaded and Anisotropic Wood-Derived Hydrogel Periosteum with Super Antibacterial, Anti-Inflammatory, and Osteogenic Activities
Anisotropic and robust hydrogels combined osteogenic and angiogenic activity as artificial periosteum
Dual-Cross-linked Liquid Crystal Hydrogels with Controllable Viscoelasticity for Regulating Cell Behaviors
MXene Nanosheet-Enhanced Chitin Aerogel Spheres for Bilirubin Adsorption
Bio-inspired liquid crystal gel with adjustable viscoelasticity to modulate cell behaviors and fate
Facile Polyphenol–Europium Assembly Enabled Functional Poly(<scp>l</scp>‐Lactic Acid) Nanofiber Mats with Enhanced Antioxidation and Angiogenesis for Accelerated Wound Healing
H2O2-responsive smart dressing for visible H2O2 monitoring and accelerating wound healing
The design, fabrication and evaluation of 3D printed gHNTs/gMgO whiskers/PLLA composite scaffold with honeycomb microstructure for bone tissue engineering
Fabrication and evaluation of a chitin whisker/poly(<scp>l</scp>-lactide) composite scaffold by the direct trisolvent-ink writing method for bone tissue engineering
Iron coupling with carbon fiber to stimulate biofilms formation in aerobic biological film systems for improved decentralized wastewater treatment: Performance, mechanisms and implications
Liquid crystalline and rheological properties of chitin whiskers with different chemical structures and chargeability
Preparation of HAp whiskers with or without Mg ions and their effects on the mechanical properties and osteogenic activity of poly(,-lactide)