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Title: Effects of targeting the VEGF and PDGF pathways in diffuse orthotopic glioma models
Author(s): Navis, A.C.
Hamans, B.C. (298983257)
Claes, A. (298980991)
Heerschap, A. (070751226)
Jeuken, J.W.M. (239336933)
Wesseling, P. (157872866)
Leenders, W.P.J. (110289757)
Publication year: 2011
Document type: Article / Letter to editor
Journal: Journal of Pathology
ISSN: 0022-3417
Volume: vol. 223
Issue: iss. 5
Start page: p. 626
End page: p. 634
Annotation: Navis, Anna C Hamans, Bob C Claes, An Heerschap, Arend Jeuken, Judith W M Wesseling, Pieter Leenders, William P J Research Support, Non-U.S. Gov't England J Pathol. 2011 Apr;223(5):626-34. doi: 10.1002/path.2836. Epub 2011 Feb 21.
Abstract: Currently available compounds that interfere with VEGF-A signalling effectively inhibit angiogenesis in gliomas, but influence diffuse infiltrative growth to a much lesser extent. Development of a functional tumour vascular bed not only involves VEGF-A but also requires platelet-derived growth factor receptor-beta (PDGFRbeta), which induces maturation of tumour blood vessels. Therefore, we tested whether combined inhibition of VEGFR and PDGFRbeta increases therapeutic benefit in the orthotopic glioma xenograft models E98 and E473, both displaying the diffuse infiltrative growth that is characteristically observed in most human gliomas. We used bevacizumab and vandetanib as VEGF(R) inhibitors, and sunitinib to additionally target PDGFRbeta. We show that combination therapy of sunitinib and vandetanib does not improve therapeutic efficacy compared to treatment with sunitinib, vandetanib or bevacizumab alone. Furthermore, all compounds induced reduction of vessel leakage in compact E98 tumour areas, resulting in decreased detectability of these mostly infiltrative xenografts in Gd-DTPA-enhanced MRI scans. These data show that inhibition of VEGF signalling cannot be optimized by additional PDGFR inhibition and support the concept that diffuse infiltrative areas in gliomas are resistant to anti-angiogenic therapy.
Subject: ONCOL 3: Translational research
ONCOL 3: Translational research NCMLS 1C: Tissue engineering and pathology
ONCOL 3: Translational research NCMLS 2A: Energy and redox metabolism
Subject: ONCOL 3: Translational research NCMLS 1C: Tissue engineering and pathology
Organization: Pathology
Radiology
Appears in Collections:Academic bibliography

Please use this identifier to cite or link to this item: http://hdl.handle.net/2066/95856

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