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

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, phag...

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Autores principales: Ullman, Christopher, Mathonet, Pascale, Oleksy, Arkadiusz, Diamandakis, Agata, Tomei, Licia, Demartis, Anna, Nardi, Chiara, Sambucini, Sonia, Missineo, Antonino, Alt, Karen, Hagemeyer, Christoph E., Harris, Matt, Hedt, Amos, Weis, Roland, Gehlsen, Kurt R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4552014/
https://www.ncbi.nlm.nih.gov/pubmed/26313909
http://dx.doi.org/10.1371/journal.pone.0135278
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author Ullman, Christopher
Mathonet, Pascale
Oleksy, Arkadiusz
Diamandakis, Agata
Tomei, Licia
Demartis, Anna
Nardi, Chiara
Sambucini, Sonia
Missineo, Antonino
Alt, Karen
Hagemeyer, Christoph E.
Harris, Matt
Hedt, Amos
Weis, Roland
Gehlsen, Kurt R.
author_facet Ullman, Christopher
Mathonet, Pascale
Oleksy, Arkadiusz
Diamandakis, Agata
Tomei, Licia
Demartis, Anna
Nardi, Chiara
Sambucini, Sonia
Missineo, Antonino
Alt, Karen
Hagemeyer, Christoph E.
Harris, Matt
Hedt, Amos
Weis, Roland
Gehlsen, Kurt R.
author_sort Ullman, Christopher
collection PubMed
description 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 (64)Cu, 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.
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spelling pubmed-45520142015-09-01 High Affinity Binders to EphA2 Isolated from Abdurin Scaffold Libraries; Characterization, Binding and Tumor Targeting Ullman, Christopher Mathonet, Pascale Oleksy, Arkadiusz Diamandakis, Agata Tomei, Licia Demartis, Anna Nardi, Chiara Sambucini, Sonia Missineo, Antonino Alt, Karen Hagemeyer, Christoph E. Harris, Matt Hedt, Amos Weis, Roland Gehlsen, Kurt R. PLoS One Research Article 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 (64)Cu, 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. Public Library of Science 2015-08-27 /pmc/articles/PMC4552014/ /pubmed/26313909 http://dx.doi.org/10.1371/journal.pone.0135278 Text en © 2015 Ullman et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ullman, Christopher
Mathonet, Pascale
Oleksy, Arkadiusz
Diamandakis, Agata
Tomei, Licia
Demartis, Anna
Nardi, Chiara
Sambucini, Sonia
Missineo, Antonino
Alt, Karen
Hagemeyer, Christoph E.
Harris, Matt
Hedt, Amos
Weis, Roland
Gehlsen, Kurt R.
High Affinity Binders to EphA2 Isolated from Abdurin Scaffold Libraries; Characterization, Binding and Tumor Targeting
title High Affinity Binders to EphA2 Isolated from Abdurin Scaffold Libraries; Characterization, Binding and Tumor Targeting
title_full High Affinity Binders to EphA2 Isolated from Abdurin Scaffold Libraries; Characterization, Binding and Tumor Targeting
title_fullStr High Affinity Binders to EphA2 Isolated from Abdurin Scaffold Libraries; Characterization, Binding and Tumor Targeting
title_full_unstemmed High Affinity Binders to EphA2 Isolated from Abdurin Scaffold Libraries; Characterization, Binding and Tumor Targeting
title_short High Affinity Binders to EphA2 Isolated from Abdurin Scaffold Libraries; Characterization, Binding and Tumor Targeting
title_sort high affinity binders to epha2 isolated from abdurin scaffold libraries; characterization, binding and tumor targeting
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4552014/
https://www.ncbi.nlm.nih.gov/pubmed/26313909
http://dx.doi.org/10.1371/journal.pone.0135278
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