The use of phage-displayed peptide libraries is a powerful method for selecting peptides with desired binding properties. However, the validation and prioritization of “hits” obtained from this screening approach remains challenging. Here, we describe the development and testing of a new analysis method to identify and display hits from phage-display experiments and high-throughput enzyme-linked immunosorbent assay screens. We test the method using a phage screen against activated macrophages to develop imaging agents with higher specificity for active disease processes. The new methodology should be useful in identifying phage hits and is extendable to other library screening methods such as small-molecule and nanoparticle libraries
AbstractRapid identification of in vivo affinity ligands would have far-reaching applications for im...
tions is particularly demanding because their binding surfaces often contain few distinguishing feat...
AbstractPeptides can be displayed on the surface of filamentous bacteriophages by fusion to phage co...
The use of phage-displayed peptide libraries is a powerful method for selecting peptides with desire...
AbstractPhage display screenings are frequently employed to identify high-affinity peptides or antib...
The advancement of molecular imaging hardware and disease targets has driven the demand of novel pro...
Ligands selected from phage-displayed random peptide libraries tend to be directed to biologically r...
The construction of new and increasingly diverse libraries, as well as the implementation of more po...
Peptide ligands are used to increase the specificity of drug carriers to their target cells and to f...
An increasing number of peptides with specific binding affinity to various protein and even non-prot...
Abstract Screening phage display libraries of proteins and peptides has, for almost two decades, pro...
BACKGROUND:Combinatorial phage display has been used in the last 20 years in the identification of p...
Phage display technology presents a rapid means by which proteins and peptides that bind specificall...
Rapid identification of in vivo affinity ligands would have far-reaching applications for imaging sp...
Phage display technology (PDT), a combinatorial screening approach, provides a molecular diversity t...
AbstractRapid identification of in vivo affinity ligands would have far-reaching applications for im...
tions is particularly demanding because their binding surfaces often contain few distinguishing feat...
AbstractPeptides can be displayed on the surface of filamentous bacteriophages by fusion to phage co...
The use of phage-displayed peptide libraries is a powerful method for selecting peptides with desire...
AbstractPhage display screenings are frequently employed to identify high-affinity peptides or antib...
The advancement of molecular imaging hardware and disease targets has driven the demand of novel pro...
Ligands selected from phage-displayed random peptide libraries tend to be directed to biologically r...
The construction of new and increasingly diverse libraries, as well as the implementation of more po...
Peptide ligands are used to increase the specificity of drug carriers to their target cells and to f...
An increasing number of peptides with specific binding affinity to various protein and even non-prot...
Abstract Screening phage display libraries of proteins and peptides has, for almost two decades, pro...
BACKGROUND:Combinatorial phage display has been used in the last 20 years in the identification of p...
Phage display technology presents a rapid means by which proteins and peptides that bind specificall...
Rapid identification of in vivo affinity ligands would have far-reaching applications for imaging sp...
Phage display technology (PDT), a combinatorial screening approach, provides a molecular diversity t...
AbstractRapid identification of in vivo affinity ligands would have far-reaching applications for im...
tions is particularly demanding because their binding surfaces often contain few distinguishing feat...
AbstractPeptides can be displayed on the surface of filamentous bacteriophages by fusion to phage co...