Area of research
Biomedical Engineering · Biomaterials
Research interest
Research focused on Photothermal therapy and Drug delivery, with related work in Signal transducing adaptor protein, Nanocrystal, Hyaluronic acid. Notable publications include 'Structural Analysis of the STING Adaptor Protein Reveals a Hydrophobic Dimer Interface and Mode of Cyclic di-GMP Binding', 'Bimetallic nanodots for tri-modal CT/MRI/PA imaging and hypoxia-resistant thermoradiotherapy in the NIR-II biological windows', and 'Advances in Polysaccharide-Based Microneedle Systems for the Treatment of Ocular Diseases'.
A double-walled porous metal-perylenediimide framework for enhanced photocatalysis
Advances in Polysaccharide-Based Microneedle Systems for the Treatment of Ocular Diseases
Biomimetic nanoparticles with red blood cell membranes for enhanced photothermal and immunotherapy for tumors
Tumour‐microenvironment‐responsive Na<sub>2</sub>S<sub>2</sub>O<sub>8</sub> nanocrystals encapsulated in hollow organosilica–metal–phenolic networks for cycling persistent tumour‐dynamic therapy
Real-time continuous measurement of intraoperative trace exhaled propofol by planar differential mobility spectrometry
Novel role of dynamin‐related‐protein 1 in dynamics of ER‐lipid droplets in adipose tissue
Bimetallic nanodots for tri-modal CT/MRI/PA imaging and hypoxia-resistant thermoradiotherapy in the NIR-II biological windows
Imaging-guided synergistic targeting-promoted photo-chemotherapy against cancers by methotrexate-conjugated hyaluronic acid nanoparticles
Pep-1 peptide-functionalized liposome to enhance the anticancer efficacy of cilengitide in glioma treatment
New Phloroglucinol Derivatives from the Fruit Tree <i>Syzygium jambos</i> and Their Cytotoxic and Antioxidant Activities
Structural Analysis of the STING Adaptor Protein Reveals a Hydrophobic Dimer Interface and Mode of Cyclic di-GMP Binding