Area of research
Molecular Biology · Biomaterials
Research interest
Research interests include RNA Interference and Gene Delivery, Nanoparticle-Based Drug Delivery, Advanced biosensing and bioanalysis techniques, and Advanced Polymer Synthesis and Characterization.
A TLR7-nanoparticle adjuvant promotes a broad immune response against heterologous strains of influenza and SARS-CoV-2
Accelerated polymerization of N-carboxyanhydrides catalyzed by crown ether
Near quantitative synthesis of urea macrocycles enabled by bulky N-substituent
Synthetic polypeptides for drug and gene delivery, and tissue engineering
“Metaphilic” Cell-Penetrating Polypeptide-Vancomycin Conjugate Efficiently Eradicates Intracellular Bacteria via a Dual Mechanism
Synthesis of polypeptides via bioinspired polymerization of in situ purified <i>N</i> -carboxyanhydrides
Proximity-Induced Cooperative Polymerization in “Hinged” Helical Polypeptides
Macrophage-Membrane-Coated Nanoparticles for Tumor-Targeted Chemotherapy
Nonviral gene editing via CRISPR/Cas9 delivery by membrane-disruptive and endosomolytic helical polypeptide
Dimeric Prodrug Self-Delivery Nanoparticles with Enhanced Drug Loading and Bioreduction Responsiveness for Targeted Cancer Therapy
Enhanced bioreduction-responsive diselenide-based dimeric prodrug nanoparticles for triple negative breast cancer therapy
Synthetic polypeptides: from polymer design to supramolecular assembly and biomedical application
Selective killing of <i>Helicobacter pylori</i> with pH-responsive helix–coil conformation transitionable antimicrobial polypeptides
Bioresorbable silicon electronic sensors for the brain
Dimeric Drug Polymeric Nanoparticles with Exceptionally High Drug Loading and Quantitative Loading Efficiency
Helical antimicrobial polypeptides with radial amphiphilicity
Self‐Assembly of α‐Helical Polypeptides Driven by Complex Coacervation
Self‐Assembly of α‐Helical Polypeptides Driven by Complex Coacervation
RNAs specifically affect gene expression in a length, position and sequence dependent manner.
PubMed 2014cited by 4position: first
The effects of a short sequence enhancer (5′-GTGAAATAAATGCAAATAAAGT) and its derived sequences on green fluorescent protein expression
Poly(iohexol) Nanoparticles As Contrast Agents for in Vivo X-ray Computed Tomography Imaging
Drug-Initiated Ring-Opening Polymerization of <i>O</i>-Carboxyanhydrides for the Preparation of Anticancer Drug–Poly(<i>O</i>-carboxyanhydride) Nanoconjugates
Finding of <i>IFNγ</i> gene enhancers and their core sequences