Area of research
Biomedical Engineering · Pathology and Forensic Medicine
Research interest
Research interests include Bone Tissue Engineering Materials, Spine and Intervertebral Disc Pathology, Autophagy in Disease and Therapy, and Nanoplatforms for cancer theranostics.
Piezoelectric hydrogel with self-powered biomechanical stimulation enhances bone regeneration
Constructing Activatable Photosensitizers Using Covalently Modified Mesoporous Silica
An acid-responsive bone-targeting nanoplatform loaded with curcumin balances osteogenic and osteoclastic functions
Engineered Biomimetic Cancer Cell Membrane Nanosystems Trigger Gas‐Immunometabolic Therapy for Spinal‐Metastasized Tumors
Remodeling of the Intra‐Conduit Inflammatory Microenvironment to Improve Peripheral Nerve Regeneration with a Neuromechanical Matching Protein‐Based Conduit
Injectable, anti-collapse, adhesive, plastic and bioactive bone graft substitute promotes bone regeneration by moderating oxidative stress in osteoporotic bone defect
Injectable Nanorobot-Hydrogel Superstructure for Hemostasis and Anticancer Therapy of Spinal Metastasis
Multifunctional Bone Regeneration Membrane with Flexibility, Electrical Stimulation Activity and Osteoinductive Activity
Single‐Component Dual‐Functional Autoboost Strategy by Dual Photodynamic and Cyclooxygenase‐2 Inhibition for Lung Cancer and Spinal Metastasis
A smart hypochlorous acid fluorescent probe enabling Ibuprofen-release for osteoarthritis theranostics
Precipitation‐Based Silk Fibroin Fast Gelling, Highly Adhesive, and Magnetic Nanocomposite Hydrogel for Repair of Irregular Bone Defects
Site-selective superassembly of biomimetic nanorobots enabling deep penetration into tumor with stiff stroma
Polydopamine‐Decorated PLCL Conduit to Induce Synergetic Effect of Electrical Stimulation and Topological Morphology for Peripheral Nerve Regeneration
Golgi Apparatus-Targeted Photodynamic Therapy for Enhancing Tumor Immunogenicity by Eliciting NLRP3 Protein-Dependent Pyroptosis
Tendon Repair and Regeneration Using Bioinspired Fibrillation Engineering That Mimicked the Structure and Mechanics of Natural Tissue
Safety and Efficacy of Paxlovid Against Omicron Variants of Coronavirus Disease 2019 in Elderly Patients
Biomimetic Structural Protein Based Magnetic Responsive Scaffold for Enhancing Bone Regeneration by Physical Stimulation on Intracellular Calcium Homeostasis
Contribution of immune cells to intervertebral disc degeneration and the potential of immunotherapy
Inhibition of Schwann Cell Pyroptosis Promotes Nerve Regeneration in Peripheral Nerve Injury in Rats
Piezoresistive MXene/Silk fibroin nanocomposite hydrogel for accelerating bone regeneration by Re-establishing electrical microenvironment
Enhancement of anti-PD-1/PD-L1 immunotherapy for osteosarcoma using an intelligent autophagy-controlling metal organic framework
Engineering BPQDs/PLGA nanospheres-integrated wood hydrogel bionic scaffold for combinatory bone repair and osteolytic tumor therapy
Iron Metabolism and Ferroptosis in Peripheral Nerve Injury
Hybrid Mesoporous MnO<sub>2</sub>-Upconversion Nanoparticles for Image-Guided Lung Cancer Spinal Metastasis Therapy
Procyanidin B2 alleviates oxidative stress‐induced nucleus pulposus cells apoptosis through upregulating Nrf2 via PI3K–Akt pathway
Injectable Mussel‐Inspired highly adhesive hydrogel with exosomes for endogenous cell recruitment and cartilage defect regeneration
Flexible Bicolorimetric Polyacrylamide/Chitosan Hydrogels for Smart Real‐Time Monitoring and Promotion of Wound Healing
Injectable sericin based nanocomposite hydrogel for multi-modal imaging-guided immunomodulatory bone regeneration
Excessive mechanical strain accelerates intervertebral disc degeneration by disrupting intrinsic circadian rhythm
The circadian rhythm in intervertebral disc degeneration: an autophagy connection