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Human single-chain variable fragment that specifically targets arthritic cartilage

OBJECTIVE: To demonstrate that posttranslational modification of type II collagen (CII) by reactive oxygen species (ROS), which are known to be present in inflamed arthritic joints, can give rise to epitopes specific to damaged cartilage in rheumatoid arthritis (RA) and osteoarthritis (OA) and to es...

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Autores principales: Hughes, Chris, Faurholm, Bjarne, Dell'Accio, Francesco, Manzo, Antonio, Seed, Michael, Eltawil, Noha, Marrelli, Alessandra, Gould, David, Subang, Christina, Al-Kashi, Adam, De Bari, Cosimo, Winyard, Paul, Chernajovsky, Yuti, Nissim, Ahuva
Formato: Texto
Lenguaje:English
Publicado: Wiley Subscription Services, Inc., A Wiley Company 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2905615/
https://www.ncbi.nlm.nih.gov/pubmed/20131274
http://dx.doi.org/10.1002/art.27346
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author Hughes, Chris
Faurholm, Bjarne
Dell'Accio, Francesco
Manzo, Antonio
Seed, Michael
Eltawil, Noha
Marrelli, Alessandra
Gould, David
Subang, Christina
Al-Kashi, Adam
De Bari, Cosimo
Winyard, Paul
Chernajovsky, Yuti
Nissim, Ahuva
author_facet Hughes, Chris
Faurholm, Bjarne
Dell'Accio, Francesco
Manzo, Antonio
Seed, Michael
Eltawil, Noha
Marrelli, Alessandra
Gould, David
Subang, Christina
Al-Kashi, Adam
De Bari, Cosimo
Winyard, Paul
Chernajovsky, Yuti
Nissim, Ahuva
author_sort Hughes, Chris
collection PubMed
description OBJECTIVE: To demonstrate that posttranslational modification of type II collagen (CII) by reactive oxygen species (ROS), which are known to be present in inflamed arthritic joints, can give rise to epitopes specific to damaged cartilage in rheumatoid arthritis (RA) and osteoarthritis (OA) and to establish a proof of concept that antibodies specific to ROS-modified CII can be used to target therapeutics specifically to inflamed arthritic joints. METHODS: We used a semisynthetic phage display human antibody library to raise single-chain variable fragments (scFv) specific to ROS-modified CII. The specificity of anti–ROS-modified CII scFv to damaged arthritic cartilage was assessed in vitro by immunostaining articular cartilage from RA and OA patients and from normal controls. The in vivo targeting potential was tested using mice with antigen-induced arthritis, in which localization of anti–ROS-modified CII scFv in the joints was determined. The therapeutic effect of anti–ROS-modified CII scFv fused to soluble murine tumor necrosis factor receptor II–Fc fusion protein (mTNFRII-Fc) was also investigated. RESULTS: The anti–ROS-modified CII scFv bound to damaged arthritic cartilage from patients with RA and OA but not to normal preserved cartilage. When systemically administered to arthritic mice, the anti–ROS-modified CII accumulated selectively at the inflamed joints. Importantly, when fused to mTNFRII-Fc, it significantly reduced inflammation in arthritic mice, as compared with the effects of mTNFRII-Fc alone or of mTNFRII-Fc fused to an irrelevant scFv. CONCLUSION: Our findings indicate that biologic therapeutics can be targeted specifically to arthritic joints and suggest a new approach for the development of novel treatments of arthritis.
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spelling pubmed-29056152010-07-29 Human single-chain variable fragment that specifically targets arthritic cartilage Hughes, Chris Faurholm, Bjarne Dell'Accio, Francesco Manzo, Antonio Seed, Michael Eltawil, Noha Marrelli, Alessandra Gould, David Subang, Christina Al-Kashi, Adam De Bari, Cosimo Winyard, Paul Chernajovsky, Yuti Nissim, Ahuva Arthritis Rheum Experimental Arthritis OBJECTIVE: To demonstrate that posttranslational modification of type II collagen (CII) by reactive oxygen species (ROS), which are known to be present in inflamed arthritic joints, can give rise to epitopes specific to damaged cartilage in rheumatoid arthritis (RA) and osteoarthritis (OA) and to establish a proof of concept that antibodies specific to ROS-modified CII can be used to target therapeutics specifically to inflamed arthritic joints. METHODS: We used a semisynthetic phage display human antibody library to raise single-chain variable fragments (scFv) specific to ROS-modified CII. The specificity of anti–ROS-modified CII scFv to damaged arthritic cartilage was assessed in vitro by immunostaining articular cartilage from RA and OA patients and from normal controls. The in vivo targeting potential was tested using mice with antigen-induced arthritis, in which localization of anti–ROS-modified CII scFv in the joints was determined. The therapeutic effect of anti–ROS-modified CII scFv fused to soluble murine tumor necrosis factor receptor II–Fc fusion protein (mTNFRII-Fc) was also investigated. RESULTS: The anti–ROS-modified CII scFv bound to damaged arthritic cartilage from patients with RA and OA but not to normal preserved cartilage. When systemically administered to arthritic mice, the anti–ROS-modified CII accumulated selectively at the inflamed joints. Importantly, when fused to mTNFRII-Fc, it significantly reduced inflammation in arthritic mice, as compared with the effects of mTNFRII-Fc alone or of mTNFRII-Fc fused to an irrelevant scFv. CONCLUSION: Our findings indicate that biologic therapeutics can be targeted specifically to arthritic joints and suggest a new approach for the development of novel treatments of arthritis. Wiley Subscription Services, Inc., A Wiley Company 2010-04 /pmc/articles/PMC2905615/ /pubmed/20131274 http://dx.doi.org/10.1002/art.27346 Text en Copyright © 2010 American College of Rheumatology http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Experimental Arthritis
Hughes, Chris
Faurholm, Bjarne
Dell'Accio, Francesco
Manzo, Antonio
Seed, Michael
Eltawil, Noha
Marrelli, Alessandra
Gould, David
Subang, Christina
Al-Kashi, Adam
De Bari, Cosimo
Winyard, Paul
Chernajovsky, Yuti
Nissim, Ahuva
Human single-chain variable fragment that specifically targets arthritic cartilage
title Human single-chain variable fragment that specifically targets arthritic cartilage
title_full Human single-chain variable fragment that specifically targets arthritic cartilage
title_fullStr Human single-chain variable fragment that specifically targets arthritic cartilage
title_full_unstemmed Human single-chain variable fragment that specifically targets arthritic cartilage
title_short Human single-chain variable fragment that specifically targets arthritic cartilage
title_sort human single-chain variable fragment that specifically targets arthritic cartilage
topic Experimental Arthritis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2905615/
https://www.ncbi.nlm.nih.gov/pubmed/20131274
http://dx.doi.org/10.1002/art.27346
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