Area of research
Biomedical Engineering · Pulmonary and Respiratory Medicine
Research interest
Research interests include Nanoplatforms for cancer theranostics, Photodynamic Therapy Research Studies, Advanced Nanomaterials in Catalysis, and Advanced Neural Network Applications.
Advanced Current Collector Design for High Energy Density Anode‐Free Sodium‐Ion Batteries
Endoplasmic Reticulum‐Targeting Iridium(III) Nanosonosensitizer Amplifies Immunogenic Cell Death for Boosted Tumor Sono‐Immunotherapy
A mitochondria-targeting ROS-activated nanoprodrug for self-augmented antitumor oxidation therapy
Tumor-targeted hyaluronic acid-based oxidative stress nanoamplifier with ROS generation and GSH depletion for antitumor therapy
Reactive oxygen species-activated self-amplifying prodrug nanoagent for tumor-specific Cu-chelate chemotherapy and cascaded photodynamic therapy
pH-activatable oxidative stress amplifying dissolving microneedles for combined chemo-photodynamic therapy of melanoma
Engineered macrophages as near-infrared light activated drug vectors for chemo-photodynamic therapy of primary and bone metastatic breast cancer
Glutathione-responsive copper-disulfiram nanoparticles for enhanced tumor chemotherapy
Tumor-targeted supramolecular catalytic nanoreactor for synergistic chemo/chemodynamic therapy via oxidative stress amplification and cascaded Fenton reaction
Three birds with one stone: A ferric pyrophosphate based nanoagent for synergetic NIR-triggered photo/chemodynamic therapy with glutathione depletion
Near-infrared light-triggered degradable hyaluronic acid hydrogel for on-demand drug release and combined chemo-photodynamic therapy