Peer-Reviewed Journal Details
Mandatory Fields
Bowes T.;Hanley S.;Liew A.;Eglon M.;Mashayekhi K.;O'Kennedy R.;Barry F.;Taylor W.;O'Brien T.;Griffin M.;Finlay W.;Greiser U.
2011
August
Journal of Biomolecular Screening
Developing cell-specific antibodies to endothelial progenitor cells using avian immune phage display technology
Published
9 ()
Optional Fields
cell surface markers endothelial progenitor cells phage display single-chain antibodies vasculature
16
7
744
754
This study aims at generating immune chicken phage display libraries and single-chain antibodies (scFvs) specifically directed against cell surface markers of cultured peripheral blood mononuclear cells (PBMCs) that contain endothelial progenitor cells (EPCs). In contrast to previous approaches that use well-defined recombinant antigens attached to plastic surfaces that may alter the structure of the proteins, the authors describe a method that maintains the cell surface markers on live cells while providing the opportunity to rapidly screen entire libraries for antibodies that bind to unknown cell surface markers of progenitor/stem cells. Chickens immunized with live EPCs, consisting of a heterogeneous population of lymphocytes and monocytes, demonstrated a robust immune response. After three rounds of biopanning, the authors purified and characterized three unique scFvs called UG1-3. Codon-optimized recombinant UG1 (gUG-1) shows binding by flow cytometry to circulating CD14-positive cells in peripheral blood consistent with predominant expression of a target protein on monocyte subsets. The authors describe the successful use of immunization of chickens for the generation of scFvs against a heterogenous population of EPCs displaying unknown cell surface markers and demonstrate the strong potential of phage display technology in the development of reagents for the isolation and characterization of stem/progenitor cells. © 2011 Society for Laboratory Automation and Screening.
1087-0571
10.1177/1087057111407067
Grant Details