Area of research
Biomaterials · Molecular Biology
Research interest
Research interests include Supramolecular Self-Assembly in Materials, RNA Interference and Gene Delivery, Polydiacetylene-based materials and applications, and Advanced biosensing and bioanalysis techniques.
Self-Assembling Peptides, Conjugates, and Mimics: A Versatile Platform for Materials and Beyond
Machine learning overcomes human bias in the discovery of self-assembling peptides
Collagen-Binding Peptide-Enabled Supramolecular Hydrogel Design for Improved Organ Adhesion and Sprayable Therapeutic Delivery
Tiny Object Detection via Regional Cross Self-Attention Network
Tumour sensitization via the extended intratumoural release of a STING agonist and camptothecin from a self-assembled hydrogel
Supramolecular prodrug hydrogelator as an immune booster for checkpoint blocker–based immunotherapy
Fine-Tuning the Linear Release Rate of Paclitaxel-Bearing Supramolecular Filament Hydrogels through Molecular Engineering
Peptide-based nanoprobes for molecular imaging and disease diagnostics
Preclinical development of drug delivery systems for paclitaxel-based cancer chemotherapy
Solute-Triggered Morphological Transitions of an Amphiphilic Heterografted Brush Copolymer as a Single-Molecule Drug Carrier
Peptide–drug conjugates as effective prodrug strategies for targeted delivery
Tuning Cellular Uptake of Molecular Probes by Rational Design of Their Assembly into Supramolecular Nanoprobes
Peptide‐based supramolecular hydrogels for delivery of biologics
Building nanostructures with drugs
The Role of Micelle Size in Tumor Accumulation, Penetration, and Treatment
Phase Transition of Spindle-Associated Protein Regulate Spindle Apparatus Assembly
Electrostatic-Driven Lamination and Untwisting of β-Sheet Assemblies
Self-healable, tough and highly stretchable ionic nanocomposite physical hydrogels
One-component nanomedicine
Amino Acid Sequence in Constitutionally Isomeric Tetrapeptide Amphiphiles Dictates Architecture of One-Dimensional Nanostructures
Reversal of doxorubicin resistance in breast cancer by mitochondria-targeted pH-responsive micelles
Supramolecular Nanostructures Formed by Anticancer Drug Assembly
Self-Assembled Tat Nanofibers as Effective Drug Carrier and Transporter
Supramolecular filaments containing a fixed 41% paclitaxel loading
Plasmid‐Templated Shape Control of Condensed DNA–Block Copolymer Nanoparticles
Entropically Constrained Self-Limiting Supramolecular Polymerization
Collaborative Research: DMREF: GOALI: High-Affinity Supramolecular Peptide Materials for Selective Capture and Recovery of Proteins
CDMR: Tuning the Mechanical Properties of Ordered Supramolecular Polymers and Their Networks
Collaborative Research: Well-Defined Polyelectrolyte Nanocages via Crystallized Miniemulsion Nanodroplets
CAREER: Self-Assembly of Anti-Cancer Drugs into Well-Defined Supramolecular Nanostructures