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PDGF-C Induces Maturation of Blood Vessels in a Model of Glioblastoma and Attenuates the Response to Anti-VEGF Treatment

BACKGROUND: Recent clinical trials of VEGF inhibitors have shown promise in the treatment of recurrent glioblastomas (GBM). However, the survival benefit is usually short-lived as tumors escape anti-VEGF therapies. Here we tested the hypothesis that Platelet Derived Growth Factor-C (PDGF-C), an isof...

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Autores principales: di Tomaso, Emmanuelle, London, Nyall, Fuja, Daniel, Logie, James, Tyrrell, James A., Kamoun, Walid, Munn, Lance L., Jain, Rakesh K.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2662415/
https://www.ncbi.nlm.nih.gov/pubmed/19352490
http://dx.doi.org/10.1371/journal.pone.0005123
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author di Tomaso, Emmanuelle
London, Nyall
Fuja, Daniel
Logie, James
Tyrrell, James A.
Kamoun, Walid
Munn, Lance L.
Jain, Rakesh K.
author_facet di Tomaso, Emmanuelle
London, Nyall
Fuja, Daniel
Logie, James
Tyrrell, James A.
Kamoun, Walid
Munn, Lance L.
Jain, Rakesh K.
author_sort di Tomaso, Emmanuelle
collection PubMed
description BACKGROUND: Recent clinical trials of VEGF inhibitors have shown promise in the treatment of recurrent glioblastomas (GBM). However, the survival benefit is usually short-lived as tumors escape anti-VEGF therapies. Here we tested the hypothesis that Platelet Derived Growth Factor-C (PDGF-C), an isoform of the PDGF family, affects GBM progression independent of VEGF pathway and hinders anti-VEGF therapy. PRINCIPAL FINDINGS: We first showed that PDGF-C is present in human GBMs. Then, we overexpressed or downregulated PDGF-C in a human GBM cell line, U87MG, and grew them in cranial windows in nude mice to assess vessel structure and function using intravital microscopy. PDGF-C overexpressing tumors had smaller vessel diameters and lower vascular permeability compared to the parental or siRNA-transfected tumors. Furthermore, vessels in PDGF-C overexpressing tumors had more extensive coverage with NG2 positive perivascular cells and a thicker collagen IV basement membrane than the controls. Treatment with DC101, an anti-VEGFR-2 antibody, induced decreases in vessel density in the parental tumors, but had no effect on the PDGF-C overexpressing tumors. CONCLUSION: These results suggest that PDGF-C plays an important role in glioma vessel maturation and stabilization, and that it can attenuate the response to anti-VEGF therapy, potentially contributing to escape from vascular normalization.
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spelling pubmed-26624152009-04-08 PDGF-C Induces Maturation of Blood Vessels in a Model of Glioblastoma and Attenuates the Response to Anti-VEGF Treatment di Tomaso, Emmanuelle London, Nyall Fuja, Daniel Logie, James Tyrrell, James A. Kamoun, Walid Munn, Lance L. Jain, Rakesh K. PLoS One Research Article BACKGROUND: Recent clinical trials of VEGF inhibitors have shown promise in the treatment of recurrent glioblastomas (GBM). However, the survival benefit is usually short-lived as tumors escape anti-VEGF therapies. Here we tested the hypothesis that Platelet Derived Growth Factor-C (PDGF-C), an isoform of the PDGF family, affects GBM progression independent of VEGF pathway and hinders anti-VEGF therapy. PRINCIPAL FINDINGS: We first showed that PDGF-C is present in human GBMs. Then, we overexpressed or downregulated PDGF-C in a human GBM cell line, U87MG, and grew them in cranial windows in nude mice to assess vessel structure and function using intravital microscopy. PDGF-C overexpressing tumors had smaller vessel diameters and lower vascular permeability compared to the parental or siRNA-transfected tumors. Furthermore, vessels in PDGF-C overexpressing tumors had more extensive coverage with NG2 positive perivascular cells and a thicker collagen IV basement membrane than the controls. Treatment with DC101, an anti-VEGFR-2 antibody, induced decreases in vessel density in the parental tumors, but had no effect on the PDGF-C overexpressing tumors. CONCLUSION: These results suggest that PDGF-C plays an important role in glioma vessel maturation and stabilization, and that it can attenuate the response to anti-VEGF therapy, potentially contributing to escape from vascular normalization. Public Library of Science 2009-04-08 /pmc/articles/PMC2662415/ /pubmed/19352490 http://dx.doi.org/10.1371/journal.pone.0005123 Text en di Tomaso 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
di Tomaso, Emmanuelle
London, Nyall
Fuja, Daniel
Logie, James
Tyrrell, James A.
Kamoun, Walid
Munn, Lance L.
Jain, Rakesh K.
PDGF-C Induces Maturation of Blood Vessels in a Model of Glioblastoma and Attenuates the Response to Anti-VEGF Treatment
title PDGF-C Induces Maturation of Blood Vessels in a Model of Glioblastoma and Attenuates the Response to Anti-VEGF Treatment
title_full PDGF-C Induces Maturation of Blood Vessels in a Model of Glioblastoma and Attenuates the Response to Anti-VEGF Treatment
title_fullStr PDGF-C Induces Maturation of Blood Vessels in a Model of Glioblastoma and Attenuates the Response to Anti-VEGF Treatment
title_full_unstemmed PDGF-C Induces Maturation of Blood Vessels in a Model of Glioblastoma and Attenuates the Response to Anti-VEGF Treatment
title_short PDGF-C Induces Maturation of Blood Vessels in a Model of Glioblastoma and Attenuates the Response to Anti-VEGF Treatment
title_sort pdgf-c induces maturation of blood vessels in a model of glioblastoma and attenuates the response to anti-vegf treatment
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2662415/
https://www.ncbi.nlm.nih.gov/pubmed/19352490
http://dx.doi.org/10.1371/journal.pone.0005123
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