Area of research
Biomedical Engineering · Rheumatology
Research interest
Research interests include Self-healing hydrogels, Chitosan, Biocompatibility, Medicine, Spinal cord injury, and Cartilage.
A sequential stimuli-responsive hydrogel promotes structural and functional recovery of severe spinal cord injury
Hydrophobic Carbon Dots Prevent α‐Synucleinopathy and Suppress Neuroinflammation to Treat Parkinson's Disease
Copper-containing chitosan-based hydrogels enabled 3D-printed scaffolds to accelerate bone repair and eliminate MRSA-related infection
Radiomics-Based Prediction of the Progression Risk Level for Pulmonary Precursor Glandular Lesions and Pre-Stage IA2 Adenocarcinomas
Distinct Molecular Features In Early-Onset Lung Adenocarcinoma
Conducting molybdenum sulfide/graphene oxide/polyvinyl alcohol nanocomposite hydrogel for repairing spinal cord injury
Carboxymethyl chitosan-assisted MnOx nanoparticles: Synthesis, characterization, detection and cartilage repair in early osteoarthritis
Corrigendum: Effects of Rhodiola Rosea Supplementation on Exercise and Sport: A Systematic Review
Ultrafast in-situ forming halloysite nanotube-doped chitosan/oxidized dextran hydrogels for hemostasis and wound repair
Recent progress in rational design of fluorescent probes for Fe2+ and bioapplication
Efficient elimination of multidrug-resistant bacteria using copper sulfide nanozymes anchored to graphene oxide nanosheets
Gadolinium-hyaluronic acid nanoparticles as an efficient and safe magnetic resonance imaging contrast agent for articular cartilage injury detection
Synergistic Photothermal and Photodynamic Therapy for Effective Implant-Related Bacterial Infection Elimination and Biofilm Disruption Using Cu<sub>9</sub>S<sub>8</sub> Nanoparticles
Rubbery Chitosan/Carrageenan Hydrogels Constructed through an Electroneutrality System and Their Potential Application as Cartilage Scaffolds
Role of Fas/FasL pathway-mediated alveolar macrophages releasing inflammatory cytokines in human silicosis.