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Suppression of murine collagen-induced arthritis by targeted apoptosis of synovial neovasculature

Because angiogenesis plays a major role in the perpetuation of inflammatory arthritis, we explored a method for selectively targeting and destroying new synovial blood vessels. Mice with collagen-induced arthritis were injected intravenously with phage expressing an RGD motif. In addition, the RGD p...

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Autores principales: Gerlag, Danielle M, Borges, Eric, Tak, Paul P, Ellerby, H Michael, Bredesen, Dale E, Pasqualini, Renata, Ruoslahti, Erkki, Firestein, Gary S
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2001
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC64846/
https://www.ncbi.nlm.nih.gov/pubmed/11714389
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author Gerlag, Danielle M
Borges, Eric
Tak, Paul P
Ellerby, H Michael
Bredesen, Dale E
Pasqualini, Renata
Ruoslahti, Erkki
Firestein, Gary S
author_facet Gerlag, Danielle M
Borges, Eric
Tak, Paul P
Ellerby, H Michael
Bredesen, Dale E
Pasqualini, Renata
Ruoslahti, Erkki
Firestein, Gary S
author_sort Gerlag, Danielle M
collection PubMed
description Because angiogenesis plays a major role in the perpetuation of inflammatory arthritis, we explored a method for selectively targeting and destroying new synovial blood vessels. Mice with collagen-induced arthritis were injected intravenously with phage expressing an RGD motif. In addition, the RGD peptide (RGD-4C) was covalently linked to a proapoptotic heptapeptide dimer, (D)(KLAKLAK)(2), and was systemically administered to mice with collagen-induced arthritis. A phage displaying an RGD-containing cyclic peptide (RGD-4C) that binds selectively to the αvβ3 and αvβ5 integrins accumulated in inflamed synovium but not in normal synovium. Homing of RGD-4C phage to inflamed synovium was inhibited by co-administration of soluble RGD-4C. Intravenous injections of the RGD-4C–(D)(KLAKLAK)(2) chimeric peptide significantly decreased clinical arthritis and increased apoptosis of synovial blood vessels, whereas treatment with vehicle or uncoupled mixture of the RGD-4C and the untargeted proapoptotic peptide had no effect. Targeted apoptosis of synovial neovasculature can induce apoptosis and suppress clinical arthritis. This form of therapy has potential utility in the treatment of inflammatory arthritis.
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spelling pubmed-648462002-01-25 Suppression of murine collagen-induced arthritis by targeted apoptosis of synovial neovasculature Gerlag, Danielle M Borges, Eric Tak, Paul P Ellerby, H Michael Bredesen, Dale E Pasqualini, Renata Ruoslahti, Erkki Firestein, Gary S Arthritis Res Research Article Because angiogenesis plays a major role in the perpetuation of inflammatory arthritis, we explored a method for selectively targeting and destroying new synovial blood vessels. Mice with collagen-induced arthritis were injected intravenously with phage expressing an RGD motif. In addition, the RGD peptide (RGD-4C) was covalently linked to a proapoptotic heptapeptide dimer, (D)(KLAKLAK)(2), and was systemically administered to mice with collagen-induced arthritis. A phage displaying an RGD-containing cyclic peptide (RGD-4C) that binds selectively to the αvβ3 and αvβ5 integrins accumulated in inflamed synovium but not in normal synovium. Homing of RGD-4C phage to inflamed synovium was inhibited by co-administration of soluble RGD-4C. Intravenous injections of the RGD-4C–(D)(KLAKLAK)(2) chimeric peptide significantly decreased clinical arthritis and increased apoptosis of synovial blood vessels, whereas treatment with vehicle or uncoupled mixture of the RGD-4C and the untargeted proapoptotic peptide had no effect. Targeted apoptosis of synovial neovasculature can induce apoptosis and suppress clinical arthritis. This form of therapy has potential utility in the treatment of inflammatory arthritis. BioMed Central 2001 2001-09-06 /pmc/articles/PMC64846/ /pubmed/11714389 Text en Copyright © 2001 2001 Gerlag et al, licensee BioMed Central Ltd
spellingShingle Research Article
Gerlag, Danielle M
Borges, Eric
Tak, Paul P
Ellerby, H Michael
Bredesen, Dale E
Pasqualini, Renata
Ruoslahti, Erkki
Firestein, Gary S
Suppression of murine collagen-induced arthritis by targeted apoptosis of synovial neovasculature
title Suppression of murine collagen-induced arthritis by targeted apoptosis of synovial neovasculature
title_full Suppression of murine collagen-induced arthritis by targeted apoptosis of synovial neovasculature
title_fullStr Suppression of murine collagen-induced arthritis by targeted apoptosis of synovial neovasculature
title_full_unstemmed Suppression of murine collagen-induced arthritis by targeted apoptosis of synovial neovasculature
title_short Suppression of murine collagen-induced arthritis by targeted apoptosis of synovial neovasculature
title_sort suppression of murine collagen-induced arthritis by targeted apoptosis of synovial neovasculature
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC64846/
https://www.ncbi.nlm.nih.gov/pubmed/11714389
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