Area of research
Cellular and Molecular Neuroscience · Biomaterials
Research interest
Research interests include Materials science, Regeneration (biology), Fibroin, Self-healing hydrogels, Tissue engineering, and Scaffold.
Zinc‐Directed Coordination Network Hydrogels for A20‐Mediated Inflammation Modulation and Enhanced Axonal Regeneration in Spinal Cord Injury
Regulatory T cells in neurological disorders and tissue regeneration: Mechanisms of action and therapeutic potentials
Supramolecular peptide hydrogel epitope vaccine functionalized with CAR-T cells for the treatment of solid tumors
Adoptive Treg therapy using chitosan conduits/self-assembled peptide hydrogels for enhanced immunomodulation and peripheral nerve regeneration
Fabrication of piezoelectric/conductive composite nerve conduits for peripheral nerve regeneration
Silk fibroin hydrogel with recombinant silk fibroin/NT3 protein enhances wound healing by promoting type III collagen synthesis and hair follicle regeneration in skin injury
Injectable reactive oxygen and nitrogen species-scavenging hydrogels for repairing traumatic brain injury
Revolutionizing neural regeneration with smart responsive materials: Current insights and future prospects
Chitooligosaccharides accelarate myelin clearance by Wipi1 mediated Schwann cell autophagy promoting peripheral nerve regeneration
Bionic tissue engineering of peripheral nerves and progress in neuroregeneration
Matrix stiffness boosts PDAC chemoresistance via SCD1-dependent lipid metabolic reprogramming
Acetylated chitosan scaffolds modulate the micro-environment and promote peripheral nerve regeneration through macrophage TLR2/4 pathway activation
Progress in Flexible and Wearable Lead-Free Polymer Composites for Radiation Protection
Immune-cell-mediated tissue engineering strategies for peripheral nerve injury and regeneration
Development of ovalbumin implants with different spatial configurations for treatment of peripheral nerve injury
Anisotropic topological scaffolds synergizing non-invasive wireless magnetic stimulation for accelerating long-distance peripheral nerve regeneration
Piezo1 Mediates Glycolysis-Boosted Pancreatic Ductal Adenocarcinoma Chemoresistance within a Biomimetic Three-Dimensional Matrix Stiffness
Multifunctional double-network hydrogel with antibacterial and anti-inflammatory synergistic effects contributes to wound healing of bacterial infection
Clickable immune-microenvironment modulated hydrogels for spinal cord injury repair
Photodynamic hemostatic silk fibroin film with photo-controllable modulation of macrophages for bacteria-infected wound healing
Innovative wound management: creating dynamic Alg-Mg/SF hydrogels for controlled Mg<sup>2+</sup> release in wound healing
A Bioinspired Self‐Healing Conductive Hydrogel Promoting Peripheral Nerve Regeneration
Recent progress and applications of poly(beta amino esters)-based biomaterials
Advancing neural regeneration via adaptable hydrogels: Enriched with Mg2+ and silk fibroin to facilitate endogenous cell infiltration and macrophage polarization
Exosome inspired photo-triggered gelation hydrogel composite on modulating immune pathogenesis for treating rheumatoid arthritis
Bionic peptide scaffold in situ polarization and recruitment of M2 macrophages to promote peripheral nerve regeneration
Cell Development Enhanced Bionic Silk Hydrogel on Remodeling Immune Pathogenesis of Spinal Cord Injury via M2 Polarization of Microglial
Fabrication and Characterization of π–π Stacking Peptide-Contained Double Network Hydrogels
Photothermal responsive cell-laden PNIPAM self-rolling hydrogel containing dopamine enhanced MWCNTs for peripheral nerve regeneration
Biomimetic Silk Fibroin Hydrogel for Enhanced Peripheral Nerve Regeneration: Synergistic Effects of Graphene Oxide and Fibroblast Exosome