Area of research
Biomedical Engineering · Biomaterials
Research interest
Research focused on Colitis and Inflammatory bowel disease, with related work in Ulcerative colitis, Endocytosis, Small interfering RNA. Notable publications include 'Edible ginger-derived nanoparticles: A novel therapeutic approach for the prevention and treatment of inflammatory bowel disease and colitis-associated cancer', 'Green’ nanotherapeutics from tea leaves for orally targeted prevention and alleviation of colon diseases', and 'Nanoparticles With Surface Antibody Against CD98 and Carrying CD98 Small Interfering RNA Reduce Colitis in Mice'.
A novel organoid model retaining the glioma microenvironment for personalized drug screening and therapeutic evaluation
Reinforced plant-derived lipid nanoparticles for oral precise epigenome editing in colonic diseases
Pathology‐Driven Design of a Biomimetic Ferromagnetic Nanomedicine for Dual‐Mode Treatment of Ulcerative Colitis and Colitis‐Associated Colorectal Cancer
Natural lipid nanoparticles extracted from Morus nigra L. leaves for targeted treatment of hepatocellular carcinoma via the oral route
Extracellular Vesicles from Nanomedicine‐Trained Intestinal Microbiota Substitute for Fecal Microbiota Transplant in Treating Ulcerative Colitis
Nano‐Armed <i>Limosilactobacillus reuteri</i> for Enhanced Photo‐Immunotherapy and Microbiota Tryptophan Metabolism against Colorectal Cancer
Mulberry Leaf Lipid Nanoparticles: a Naturally Targeted CRISPR/Cas9 Oral Delivery Platform for Alleviation of Colon Diseases
Gas-propelled nanomotors alleviate colitis through the regulation of intestinal immunoenvironment-hematopexis-microbiota circuits
Nerve Wrap for Local Delivery of FK506/Tacrolimus Accelerates Nerve Regeneration
Real-World Drug-Adverse Reaction Prediction of Combined use of TCM Formula Granules and Western Medicine
Transient Mild Photothermia Improves Therapeutic Performance of Oral Nanomedicines with Enhanced Accumulation in the Colitis Mucosa
Mulberry Biomass-Derived Nanomedicines Mitigate Colitis through Improved Inflamed Mucosa Accumulation and Intestinal Microenvironment Modulation
Metal-coordination synthesis of a natural injectable photoactive hydrogel with antibacterial and blood-aggregating functions for cancer thermotherapy and mild-heating wound repair
Recent advances in mucus-penetrating nanomedicines for oral treatment of colonic diseases
A Comparative Study of Three Nucleic Acid Integrity Assay Systems
Sensitive Detection of BRCA1 Gene Based on Target Proximity Induced Quenching of the Fluorescence of Copper Nanoclusters
Oral nanotherapeutics based on Antheraea pernyi silk fibroin for synergistic treatment of ulcerative colitis
Oral antimicrobial peptide-EGCG nanomedicines for synergistic treatment of ulcerative colitis
Mucus-Penetrating Silk Fibroin-Based Nanotherapeutics for Efficient Treatment of Ulcerative Colitis
Edible plant-derived nanotherapeutics and nanocarriers: recent progress and future directions
‘Green’ nanotherapeutics from tea leaves for orally targeted prevention and alleviation of colon diseases
Gas-carrying enhances the combustion temperature of the biomass particles
Acellular Cauda Equina Allograft as Main Material Combined with Biodegradable Chitin Conduit for Regeneration of Long‐Distance Sciatic Nerve Defect in Rats
Prompt peripheral nerve regeneration induced by a hierarchically aligned fibrin nanofiber hydrogel
Serum miRNA signature diagnoses and discriminates murine colitis subtypes and predicts ulcerative colitis in humans
Edible ginger-derived nanoparticles: A novel therapeutic approach for the prevention and treatment of inflammatory bowel disease and colitis-associated cancer
Induction of mesenchymal stem cell chondrogenic differentiation and functional cartilage microtissue formation for in vivo cartilage regeneration by cartilage extracellular matrix-derived particles
Nanoparticles With Surface Antibody Against CD98 and Carrying CD98 Small Interfering RNA Reduce Colitis in Mice
Targeting Intestinal Inflammation With CD98 siRNA/PEI–loaded Nanoparticles
Intestinal Epithelial CD98 Directly Modulates the Innate Host Response to Enteric Bacterial Pathogens