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Generation of high-affinity, internalizing anti-FGFR2 single-chain variable antibody fragment fused with Fc for targeting gastrointestinal cancers
by
Borek, Aleksandra
, Sokolowska-Wedzina, Aleksandra
, Otlewski, Jacek
, Chodaczek, Grzegorz
in
Antibodies
/ Biology and Life Sciences
/ Care and treatment
/ Fibroblast growth factors
/ Gastrointestinal cancer
/ Genetic aspects
/ Health aspects
/ Medicine and Health Sciences
/ Physiological aspects
/ Research and Analysis Methods
2018
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Generation of high-affinity, internalizing anti-FGFR2 single-chain variable antibody fragment fused with Fc for targeting gastrointestinal cancers
by
Borek, Aleksandra
, Sokolowska-Wedzina, Aleksandra
, Otlewski, Jacek
, Chodaczek, Grzegorz
in
Antibodies
/ Biology and Life Sciences
/ Care and treatment
/ Fibroblast growth factors
/ Gastrointestinal cancer
/ Genetic aspects
/ Health aspects
/ Medicine and Health Sciences
/ Physiological aspects
/ Research and Analysis Methods
2018
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Generation of high-affinity, internalizing anti-FGFR2 single-chain variable antibody fragment fused with Fc for targeting gastrointestinal cancers
by
Borek, Aleksandra
, Sokolowska-Wedzina, Aleksandra
, Otlewski, Jacek
, Chodaczek, Grzegorz
in
Antibodies
/ Biology and Life Sciences
/ Care and treatment
/ Fibroblast growth factors
/ Gastrointestinal cancer
/ Genetic aspects
/ Health aspects
/ Medicine and Health Sciences
/ Physiological aspects
/ Research and Analysis Methods
2018
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Generation of high-affinity, internalizing anti-FGFR2 single-chain variable antibody fragment fused with Fc for targeting gastrointestinal cancers
Journal Article
Generation of high-affinity, internalizing anti-FGFR2 single-chain variable antibody fragment fused with Fc for targeting gastrointestinal cancers
2018
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Overview
Fibroblast growth factor receptors (FGFRs) are promising targets for antibody-based cancer therapies, as their substantial overexpression has been found in various tumor cells. Aberrant activation of FGF receptor 2 (FGFR2) signaling through overexpression of FGFR2 and/or its ligands, mutations, or receptor amplification has been reported in multiple cancer types, including gastric, colorectal, endometrial, ovarian, breast and lung cancer. In this paper, we describe application of the phage display technology to produce a panel of high affinity single chain variable antibody fragments (scFvs) against the extracellular ligand-binding domain of FGFR2 (ECD_FGFR2). The binders were selected from the human single chain variable fragment scFv phage display libraries Tomlinson I + J and showed high specificity and binding affinity towards human FGFR2 with nanomolar KD values. To improve the affinity of the best binder selected, scFvF7, we reformatted it to a bivalent diabody format, or fused it with the Fc region (scFvF7-Fc). The scFvF7-Fc antibody construct presented the highest affinity for FGFR2, with a KD of 0.76 nM, and was selectively internalized into cancer cells overexpressing FGFR2, Snu-16 and NCI-H716. Finally, we prepared a conjugate of scFvF7-Fc with the cytotoxic drug monomethyl-auristatin E (MMAE) and evaluated its cytotoxicity. The conjugate delivered MMAE selectively to FGFR2-positive tumor cells. These results indicate that scFvF7-Fc-vcMMAE is a highly potent molecule for the treatment of cancers with FGFR2 overexpression.
Publisher
Public Library of Science,Public Library of Science (PLoS)
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