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Pharmacological targeting of apelin impairs glioblastoma growth.

Authors :
Harford-Wright, Elizabeth
Andre-Gregoire, Gwennan
Jacobs, Kathryn A.
Treps, Lucas
Gonidec, Sophie Le
Leclair, Heloise M.
Gonzalez-Diest, Sara
Roux, Quentin
Guillonneau, François
Loussouarn, Delphine
Oliver, Lisa
Vallette, François M.
Foufelle, Fabienne
Valet, Philippe
Davenport, Anthony P.
Glen, Robert C.
Bidere, Nicolas
Gavar, Julie
Le Gonidec, Sophie
Gavard, Julie
Source :
Brain: A Journal of Neurology; Nov2017, Vol. 140 Issue 11, p2939-2954, 16p
Publication Year :
2017

Abstract

Glioblastoma are highly aggressive brain tumours that are associated with an extremely poor prognosis. Within these tumours exists a subpopulation of highly plastic self-renewing cancer cells that retain the ability to expand ex vivo as tumourspheres, induce tumour growth in mice, and have been implicated in radio- and chemo-resistance. Although their identity and fate are regulated by external cues emanating from endothelial cells, the nature of such signals remains unknown. Here, we used a mass spectrometry proteomic approach to characterize the factors released by brain endothelial cells. We report the identification of the vasoactive peptide apelin as a central regulator for endothelial-mediated maintenance of glioblastoma patient-derived cells with stem-like properties. Genetic and pharmacological targeting of apelin cognate receptor abrogates apelin- and endothelial-mediated expansion of glioblastoma patient-derived cells with stem-like properties in vitro and suppresses tumour growth in vivo. Functionally, selective competitive antagonists of apelin receptor were shown to be safe and effective in reducing tumour expansion and lengthening the survival of intracranially xenografted mice. Therefore, the apelin/apelin receptor signalling nexus may operate as a paracrine signal that sustains tumour cell expansion and progression, suggesting that apelin is a druggable factor in glioblastoma. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00068950
Volume :
140
Issue :
11
Database :
Complementary Index
Journal :
Brain: A Journal of Neurology
Publication Type :
Academic Journal
Accession number :
126242730
Full Text :
https://doi.org/10.1093/brain/awx253