Protein-conjugated nanoparticles have the potential to precisely deliver therapeutics to target sites in the body by specifically binding to cell surface receptors. To maximize targeting efficiency, the three-dimensional presentation of ligands toward these receptors is crucial. Herein, we demonstrate significantly enhanced targeting of nanoparticles to cancer cells by controlling the protein orientation on the nanoparticle surface. To engineer the point of attachment, we used amber codon reassignment to incorporate a synthetic amino acid, p-azidophenylalanine (azPhe), at specific locations within a single domain antibody (sdAb or nanobody) that recognizes the human epidermal growth factor receptor (EGFR). The azPhe modified sdAb can be tet...
The relationship between the positioning of ligands on the surface of nanoparticles and the structur...
Protein cage nanoparticles are biomolecule-based supramolecular biopolymers and attractive candidate...
One major challenge in nanomedicine is how to selectively deliver nanoparticles to diseased tissues....
Protein-conjugated nanoparticles have the potential to precisely deliver therapeutics to target site...
Protein-conjugated nanoparticles have the potential to precisely deliver therapeutics to target site...
Successful application of nanoconjugates either in vitro or in vivo does depend on the design strate...
Synthesis of ligand-functionalized nanomaterials with control over size, shape, and ligand orientati...
BACKGROUND: A range of protein-based nanoparticles has been developed for cancer drug delivery and d...
Targeted nanomaterials promise improved therapeutic efficacy, however their application in nanomedic...
Synthesis of ligand-functionalized nanomaterials with control over size, shape, and ligand orientati...
Targeted nanomaterials promise improved therapeutic efficacy, however their application in nanomedic...
Targeted nanomaterials promise improved therapeutic efficacy, however their application in nanomedic...
Synthesis of ligand-functionalized nanomaterials with control over size, shape, and ligand orientati...
The surface activation of multifunctional nanoparticles (MNPs) with peptide ligands directing their ...
The relationship between the positioning of ligands on the surface of nanoparticles and the structur...
The relationship between the positioning of ligands on the surface of nanoparticles and the structur...
Protein cage nanoparticles are biomolecule-based supramolecular biopolymers and attractive candidate...
One major challenge in nanomedicine is how to selectively deliver nanoparticles to diseased tissues....
Protein-conjugated nanoparticles have the potential to precisely deliver therapeutics to target site...
Protein-conjugated nanoparticles have the potential to precisely deliver therapeutics to target site...
Successful application of nanoconjugates either in vitro or in vivo does depend on the design strate...
Synthesis of ligand-functionalized nanomaterials with control over size, shape, and ligand orientati...
BACKGROUND: A range of protein-based nanoparticles has been developed for cancer drug delivery and d...
Targeted nanomaterials promise improved therapeutic efficacy, however their application in nanomedic...
Synthesis of ligand-functionalized nanomaterials with control over size, shape, and ligand orientati...
Targeted nanomaterials promise improved therapeutic efficacy, however their application in nanomedic...
Targeted nanomaterials promise improved therapeutic efficacy, however their application in nanomedic...
Synthesis of ligand-functionalized nanomaterials with control over size, shape, and ligand orientati...
The surface activation of multifunctional nanoparticles (MNPs) with peptide ligands directing their ...
The relationship between the positioning of ligands on the surface of nanoparticles and the structur...
The relationship between the positioning of ligands on the surface of nanoparticles and the structur...
Protein cage nanoparticles are biomolecule-based supramolecular biopolymers and attractive candidate...
One major challenge in nanomedicine is how to selectively deliver nanoparticles to diseased tissues....