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A Recombinant Human Anti-Platelet scFv Antibody Produced in Pichia pastoris for Atheroma Targeting

Cells of the innate and adaptive immune system are key factors in the progression of atherosclerotic plaque, leading to plaque instability and rupture, potentially resulting in acute atherothrombotic events such as coronary artery disease, cerebrovascular disease and peripheral arterial disease. Her...

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Autores principales: Vallet-Courbin, Amelie, Larivière, Mélusine, Hocquellet, Agnès, Hemadou, Audrey, Parimala, Sarjapura-Nagaraja, Laroche-Traineau, Jeanny, Santarelli, Xavier, Clofent-Sanchez, Gisèle, Jacobin-Valat, Marie-Josée, Noubhani, Abdelmajid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5268420/
https://www.ncbi.nlm.nih.gov/pubmed/28125612
http://dx.doi.org/10.1371/journal.pone.0170305
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author Vallet-Courbin, Amelie
Larivière, Mélusine
Hocquellet, Agnès
Hemadou, Audrey
Parimala, Sarjapura-Nagaraja
Laroche-Traineau, Jeanny
Santarelli, Xavier
Clofent-Sanchez, Gisèle
Jacobin-Valat, Marie-Josée
Noubhani, Abdelmajid
author_facet Vallet-Courbin, Amelie
Larivière, Mélusine
Hocquellet, Agnès
Hemadou, Audrey
Parimala, Sarjapura-Nagaraja
Laroche-Traineau, Jeanny
Santarelli, Xavier
Clofent-Sanchez, Gisèle
Jacobin-Valat, Marie-Josée
Noubhani, Abdelmajid
author_sort Vallet-Courbin, Amelie
collection PubMed
description Cells of the innate and adaptive immune system are key factors in the progression of atherosclerotic plaque, leading to plaque instability and rupture, potentially resulting in acute atherothrombotic events such as coronary artery disease, cerebrovascular disease and peripheral arterial disease. Here, we describe the cloning, expression, purification, and immunoreactivity assessment of a recombinant single-chain variable fragment (scFv) derived from a human anti-αIIbβ3 antibody (HuAb) selected to target atheromatous lesions for the presence of platelets. Indeed, platelets within atheroma plaques have been shown to play a role in inflammation, in platelet-leucocyte aggregates and in thrombi formation and might thus be considered relevant biomarkers of atherosclerotic progression. The DNA sequence that encodes the anti-αIIbβ3 TEG4 scFv previously obtained from a phage-display selection on activated platelets, was inserted into the eukaryote vector (pPICZαA) in fusion with a tag sequence encoding 2 cysteines useable for specific probes grafting experiments. The recombinant protein was expressed at high yields in Pichia pastoris (30 mg/L culture). The advantage of P. pastoris as an expression system is the production and secretion of recombinant proteins in the supernatant, ruling out the difficulties encountered when scFv are produced in the cytoplasm of bacteria (low yield, low solubility and reduced affinity). The improved conditions allowed for the recovery of highly purified and biologically active scFv fragments ready to be grafted in a site-directed way to nanoparticles for the imaging of atherosclerotic plaques involving inflammatory processes and thus at high risk of instability.
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spelling pubmed-52684202017-02-06 A Recombinant Human Anti-Platelet scFv Antibody Produced in Pichia pastoris for Atheroma Targeting Vallet-Courbin, Amelie Larivière, Mélusine Hocquellet, Agnès Hemadou, Audrey Parimala, Sarjapura-Nagaraja Laroche-Traineau, Jeanny Santarelli, Xavier Clofent-Sanchez, Gisèle Jacobin-Valat, Marie-Josée Noubhani, Abdelmajid PLoS One Research Article Cells of the innate and adaptive immune system are key factors in the progression of atherosclerotic plaque, leading to plaque instability and rupture, potentially resulting in acute atherothrombotic events such as coronary artery disease, cerebrovascular disease and peripheral arterial disease. Here, we describe the cloning, expression, purification, and immunoreactivity assessment of a recombinant single-chain variable fragment (scFv) derived from a human anti-αIIbβ3 antibody (HuAb) selected to target atheromatous lesions for the presence of platelets. Indeed, platelets within atheroma plaques have been shown to play a role in inflammation, in platelet-leucocyte aggregates and in thrombi formation and might thus be considered relevant biomarkers of atherosclerotic progression. The DNA sequence that encodes the anti-αIIbβ3 TEG4 scFv previously obtained from a phage-display selection on activated platelets, was inserted into the eukaryote vector (pPICZαA) in fusion with a tag sequence encoding 2 cysteines useable for specific probes grafting experiments. The recombinant protein was expressed at high yields in Pichia pastoris (30 mg/L culture). The advantage of P. pastoris as an expression system is the production and secretion of recombinant proteins in the supernatant, ruling out the difficulties encountered when scFv are produced in the cytoplasm of bacteria (low yield, low solubility and reduced affinity). The improved conditions allowed for the recovery of highly purified and biologically active scFv fragments ready to be grafted in a site-directed way to nanoparticles for the imaging of atherosclerotic plaques involving inflammatory processes and thus at high risk of instability. Public Library of Science 2017-01-26 /pmc/articles/PMC5268420/ /pubmed/28125612 http://dx.doi.org/10.1371/journal.pone.0170305 Text en © 2017 Vallet-Courbin 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Vallet-Courbin, Amelie
Larivière, Mélusine
Hocquellet, Agnès
Hemadou, Audrey
Parimala, Sarjapura-Nagaraja
Laroche-Traineau, Jeanny
Santarelli, Xavier
Clofent-Sanchez, Gisèle
Jacobin-Valat, Marie-Josée
Noubhani, Abdelmajid
A Recombinant Human Anti-Platelet scFv Antibody Produced in Pichia pastoris for Atheroma Targeting
title A Recombinant Human Anti-Platelet scFv Antibody Produced in Pichia pastoris for Atheroma Targeting
title_full A Recombinant Human Anti-Platelet scFv Antibody Produced in Pichia pastoris for Atheroma Targeting
title_fullStr A Recombinant Human Anti-Platelet scFv Antibody Produced in Pichia pastoris for Atheroma Targeting
title_full_unstemmed A Recombinant Human Anti-Platelet scFv Antibody Produced in Pichia pastoris for Atheroma Targeting
title_short A Recombinant Human Anti-Platelet scFv Antibody Produced in Pichia pastoris for Atheroma Targeting
title_sort recombinant human anti-platelet scfv antibody produced in pichia pastoris for atheroma targeting
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5268420/
https://www.ncbi.nlm.nih.gov/pubmed/28125612
http://dx.doi.org/10.1371/journal.pone.0170305
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