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By-Passing Large Screening Experiments Using Sequencing as a Tool to Identify scFv Fragments Targeting Atherosclerotic Lesions in a Novel In Vivo Phage Display Selection

Atherosclerosis is a chronic, progressive inflammatory disease that may develop into vulnerable lesions leading to thrombosis. To interrogate the molecular components involved in this process, single-chain variable fragments (scFvs) from a semi-synthetic human antibody library were selected on the l...

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Autores principales: Deramchia, Kamel, Jacobin-Valat, Marie-Josee, Laroche-Traineau, Jeanny, Bonetto, Stephane, Sanchez, Stephane, Dos Santos, Pierre, Massot, Philippe, Franconi, Jean-Michel, Martineau, Pierre, Clofent-Sanchez, Gisele
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Diversity Preservation International (MDPI) 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3397503/
https://www.ncbi.nlm.nih.gov/pubmed/22837671
http://dx.doi.org/10.3390/ijms13066902
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author Deramchia, Kamel
Jacobin-Valat, Marie-Josee
Laroche-Traineau, Jeanny
Bonetto, Stephane
Sanchez, Stephane
Dos Santos, Pierre
Massot, Philippe
Franconi, Jean-Michel
Martineau, Pierre
Clofent-Sanchez, Gisele
author_facet Deramchia, Kamel
Jacobin-Valat, Marie-Josee
Laroche-Traineau, Jeanny
Bonetto, Stephane
Sanchez, Stephane
Dos Santos, Pierre
Massot, Philippe
Franconi, Jean-Michel
Martineau, Pierre
Clofent-Sanchez, Gisele
author_sort Deramchia, Kamel
collection PubMed
description Atherosclerosis is a chronic, progressive inflammatory disease that may develop into vulnerable lesions leading to thrombosis. To interrogate the molecular components involved in this process, single-chain variable fragments (scFvs) from a semi-synthetic human antibody library were selected on the lesions induced in a rabbit model of atherosclerosis after two rounds of in vivo phage display. Homing Phage-scFvs were isolated from (1) the injured endothelium, (2) the underlying lesional tissue and (3) the cells within the intima. Clones selected on the basis of their redundancy or the presence of key amino acids, as determined by comparing the distribution between the native and the selected libraries, were produced in soluble form, and seven scFvs were shown to specifically target the endothelial cell surface and inflamed intima-related regions of rabbit tissue sections by immunohistology approaches. The staining patterns differed depending on the scFv compartment of origin. This study demonstrates that large-scale scFv binding assays can be replaced by a sequence-based selection of best clones, paving the way for easier use of antibody libraries in in vivo biopanning experiments. Future investigations will be aimed at characterizing the scFv/target couples by mass spectrometry to set the stage for more accurate diagnostic of atherosclerosis and development of therapeutic strategies.
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spelling pubmed-33975032012-07-26 By-Passing Large Screening Experiments Using Sequencing as a Tool to Identify scFv Fragments Targeting Atherosclerotic Lesions in a Novel In Vivo Phage Display Selection Deramchia, Kamel Jacobin-Valat, Marie-Josee Laroche-Traineau, Jeanny Bonetto, Stephane Sanchez, Stephane Dos Santos, Pierre Massot, Philippe Franconi, Jean-Michel Martineau, Pierre Clofent-Sanchez, Gisele Int J Mol Sci Article Atherosclerosis is a chronic, progressive inflammatory disease that may develop into vulnerable lesions leading to thrombosis. To interrogate the molecular components involved in this process, single-chain variable fragments (scFvs) from a semi-synthetic human antibody library were selected on the lesions induced in a rabbit model of atherosclerosis after two rounds of in vivo phage display. Homing Phage-scFvs were isolated from (1) the injured endothelium, (2) the underlying lesional tissue and (3) the cells within the intima. Clones selected on the basis of their redundancy or the presence of key amino acids, as determined by comparing the distribution between the native and the selected libraries, were produced in soluble form, and seven scFvs were shown to specifically target the endothelial cell surface and inflamed intima-related regions of rabbit tissue sections by immunohistology approaches. The staining patterns differed depending on the scFv compartment of origin. This study demonstrates that large-scale scFv binding assays can be replaced by a sequence-based selection of best clones, paving the way for easier use of antibody libraries in in vivo biopanning experiments. Future investigations will be aimed at characterizing the scFv/target couples by mass spectrometry to set the stage for more accurate diagnostic of atherosclerosis and development of therapeutic strategies. Molecular Diversity Preservation International (MDPI) 2012-06-07 /pmc/articles/PMC3397503/ /pubmed/22837671 http://dx.doi.org/10.3390/ijms13066902 Text en © 2012 by the authors; licensee Molecular Diversity Preservation International, Basel, Switzerland. http://creativecommons.org/licenses/by/3.0 This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Deramchia, Kamel
Jacobin-Valat, Marie-Josee
Laroche-Traineau, Jeanny
Bonetto, Stephane
Sanchez, Stephane
Dos Santos, Pierre
Massot, Philippe
Franconi, Jean-Michel
Martineau, Pierre
Clofent-Sanchez, Gisele
By-Passing Large Screening Experiments Using Sequencing as a Tool to Identify scFv Fragments Targeting Atherosclerotic Lesions in a Novel In Vivo Phage Display Selection
title By-Passing Large Screening Experiments Using Sequencing as a Tool to Identify scFv Fragments Targeting Atherosclerotic Lesions in a Novel In Vivo Phage Display Selection
title_full By-Passing Large Screening Experiments Using Sequencing as a Tool to Identify scFv Fragments Targeting Atherosclerotic Lesions in a Novel In Vivo Phage Display Selection
title_fullStr By-Passing Large Screening Experiments Using Sequencing as a Tool to Identify scFv Fragments Targeting Atherosclerotic Lesions in a Novel In Vivo Phage Display Selection
title_full_unstemmed By-Passing Large Screening Experiments Using Sequencing as a Tool to Identify scFv Fragments Targeting Atherosclerotic Lesions in a Novel In Vivo Phage Display Selection
title_short By-Passing Large Screening Experiments Using Sequencing as a Tool to Identify scFv Fragments Targeting Atherosclerotic Lesions in a Novel In Vivo Phage Display Selection
title_sort by-passing large screening experiments using sequencing as a tool to identify scfv fragments targeting atherosclerotic lesions in a novel in vivo phage display selection
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3397503/
https://www.ncbi.nlm.nih.gov/pubmed/22837671
http://dx.doi.org/10.3390/ijms13066902
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