Area of research
Biomedical Engineering · Materials Chemistry
Research interest
Research interests include Nanoplatforms for cancer theranostics, Advanced Nanomaterials in Catalysis, Nanoparticle-Based Drug Delivery, and Extracellular vesicles in disease.
Nitric Oxide‐Releasing Nanoscale Metal‐Organic Layer Overcomes Hypoxia and Reactive Oxygen Species Diffusion Barriers to Enhance Cancer Radiotherapy
Unlocking the Potential of Disulfidptosis: Nanotechnology‐Driven Strategies for Advanced Cancer Therapy
Simultaneous Protonation and Metalation of a Porphyrin Covalent Organic Framework Enhance Photodynamic Therapy
Digitonin‐Loaded Nanoscale Metal–Organic Framework for Mitochondria‐Targeted Radiotherapy‐Radiodynamic Therapy and Disulfidptosis
Nanoscale Mixed-Ligand Metal–Organic Framework for X-ray Stimulated Cancer Therapy
STING activation disrupts tumor vasculature to overcome the EPR limitation and increase drug deposition
Bifunctional Metal–Organic Framework Synergistically Enhances Radiotherapy and Activates STING for Potent Cancer Radio‐Immunotherapy
Nanoscale Metal–Organic Framework with an X-ray Triggerable Prodrug for Synergistic Radiotherapy and Chemotherapy
Mechanoregulatory Cholesterol Oxidase‐Functionalized Nanoscale Metal–Organic Framework Stimulates Pyroptosis and Reinvigorates T Cells
Nanoparticle‐Mediated Radiotherapy Remodels the Tumor Microenvironment to Enhance Antitumor Efficacy
One‐Dimensional Fe<sub>2</sub>P Acts as a Fenton Agent in Response to NIR II Light and Ultrasound for Deep Tumor Synergetic Theranostics