Area of research
Organic Chemistry · Biomaterials
Research interest
Research focused on Micelle and Vesicle, with related work in Glycocalyx, Copolymer, Supramolecular chemistry. Notable publications include 'Carbohydrate-Based Macromolecular Biomaterials', 'Progressive Macromolecular Self‐Assembly: From Biomimetic Chemistry to Bio‐Inspired Materials', and 'Dendritic Cell Lectin-Targeting Sentinel-like Unimolecular Glycoconjugates To Release an Anti-HIV Drug'.
Polypept(o)ide Based Biodegradable Cylindrical Polymer Brushes: Controlling Size, Shape, Surface Functionality, and Stability
Reciprocity in dynamics of supramolecular biosystems for the clustering of ligands and receptors
Superparamagnetic Iron Oxide Nanoparticles Reprogram the Tumor Microenvironment and Reduce Lung Cancer Regrowth after Crizotinib Treatment
Harnessing Competitive Interactions to Regulate Supramolecular “Micelle-Droplet-Fiber” Transition and Reversibility in Water
Design of cross-linkable polypept(o)ide-based AB3 miktoarm star polymers through advances in PeptoMiktoStar synthesis
Deconvolving Passive and Active Targeting of Liposomes Bearing LDL Receptor Binding Peptides Using the Zebrafish Embryo Model
Carbohydrate-Based Macromolecular Biomaterials
Glycocalyx‐Mimicking Nanoparticles for Stimulation and Polarization of Macrophages via Specific Interactions
Deprotection-Induced Micellization of Glycopolymers: Control of Kinetics and Morphologies
Dendritic Cell Lectin-Targeting Sentinel-like Unimolecular Glycoconjugates To Release an Anti-HIV Drug
Glyco-Inside Micelles and Vesicles Directed by Protection–Deprotection Chemistry
Progressive Macromolecular Self‐Assembly: From Biomimetic Chemistry to Bio‐Inspired Materials
Polymeric vesicles mimicking glycocalyx (PV-Gx) for studying carbohydrate–protein interactions in solution