Area of research
Biomaterials · Surfaces, Coatings and Films
Research interest
Research focused on Nanotechnology and Ethylene glycol, with related work in PEG ratio, Nanoparticle, Cytotoxicity. Notable publications include 'An Enzyme‐Coated Metal–Organic Framework Shell for Synthetically Adaptive Cell Survival', 'Metal–Phenolic Supramolecular Gelation', and 'Protecting mitochondria via inhibiting VDAC1 oligomerization alleviates ferroptosis in acetaminophen-induced acute liver injury'.
Protein S-glutathionylation confers cellular resistance to ferroptosis induced by glutathione depletion
Engineering Poly(ethylene glycol) Nanoparticles for Accelerated Blood Clearance Inhibition and Targeted Drug Delivery
Cholesterol sulfate alleviates ulcerative colitis by promoting cholesterol biosynthesis in colonic epithelial cells
Egr1 confers protection against acetaminophen‑induced hepatotoxicity via transcriptional upregulating of Acaa2
Nonviral mcDNA-mediated bispecific CAR T cells kill tumor cells in an experimental mouse model of hepatocellular carcinoma
Protecting mitochondria via inhibiting VDAC1 oligomerization alleviates ferroptosis in acetaminophen-induced acute liver injury
Nonviral mcDNA-Mediated Cospecific CAR T Cells For The Treatment of Human Hepatocellular Carcinoma Xenograft in Mice
Person-Specific Biomolecular Coronas Modulate Nanoparticle Interactions with Immune Cells in Human Blood
<p>Minicircle DNA-Mediated CAR T Cells Targeting CD44 Suppressed Hepatocellular Carcinoma Both in vitro and in vivo</p>
Self‐Assembled Metal–Phenolic Networks on Emulsions as Low‐Fouling and pH‐Responsive Particles
Nanoengineering of Poly(ethylene glycol) Particles for Stealth and Targeting
An Enzyme‐Coated Metal–Organic Framework Shell for Synthetically Adaptive Cell Survival
Modulated Fragmentation of Proapoptotic Peptide Nanoparticles Regulates Cytotoxicity
Metal–Phenolic Supramolecular Gelation
Engineered Metal-Phenolic Capsules Show Tunable Targeted Delivery to Cancer Cells