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High Affinity Binders to EphA2 Isolated from Abdurin Scaffold Libraries; Characterization, Binding and Tumor Targeting

Authors :
Anna Demartis
Arkadiusz Oleksy
Antonino Missineo
Christopher G. Ullman
Chiara Nardi
Karen Alt
Roland Weis
Agata Diamandakis
Amos Hedt
Matthew Harris
Christoph E. Hagemeyer
Sonia Sambucini
Pascale Mathonet
Licia Tomei
Kurt R. Gehlsen
Source :
PLoS ONE, PLoS ONE, Vol 10, Iss 8, p e0135278 (2015)
Publication Year :
2015

Abstract

Abdurins are a novel antibody-like scaffold derived from the engineering of a single isolated CH2 domain of human IgG. Previous studies established the prolonged serum half-life of Abdurins, the result of a retained FcRn binding motif. Here we present data on the construction of large, diverse, phage-display and cell-free DNA display libraries and the isolation of high affinity binders to the cancer target, membrane-bound ephrin receptor tyrosine kinase class A2 (EphA2). Antigen binding regions were created by designing combinatorial libraries into the structural loops and Abdurins were selected using phage display methods. Initial binders were reformatted into new maturation libraries and low nanomolar binders were isolated using cell-free DNA display, CIS display. Further characterization confirmed binding of the Abdurins to both human and murine EphA2 proteins and exclusively to cell lines that expressed EphA2, followed by rapid internalization. Two different EphA2 binders were labeled with 64Cu, using a bifunctional MeCOSar chelator, and administered to mice bearing tumors from transplanted human prostate cancer cells, followed by PET/CT imaging. The anti-EphA2 Abdurins localized in the tumors as early as 4 hours after injection and continued to accumulate up to 48 hours when the imaging was completed. These data demonstrate the ability to isolate high affinity binders from the engineered Abdurin scaffold, which retain a long serum half-life, and specifically target tumors in a xenograft model.

Details

ISSN :
19326203
Volume :
10
Issue :
8
Database :
OpenAIRE
Journal :
PloS one
Accession number :
edsair.doi.dedup.....52f55c1cbdae2c30cc0b8b277f48af5a