Published December 10, 2014 | Version v1
Miscellaneous Restricted

Radiotherapy effect on the release of tumor micro-vesicles by glioblastoma cells

Description

Radiation therapy is a major therapeutic tool for glioblastoma (GBM). However, the post-radiation recurrence is almost inevitable, due to the emergence of a subpopulation of radioresistant cancer cells with greater proliferative, invasive, and pro-angiogenic capacities. The objective of this study was to investigate in vitro how irradiated cancer cells affect the function of untreated neighboring tumor cells and endothelial cells, focusing on signals exchange initiated by irradiation, such as soluble factors and tumor micro-vesicles (TMVs). Radiotherapy has slowed down the proliferation of GBM cells (T98G, U87) and induced mitotic death of 50-60%, without significant apoptosis. Through long-term monitoring of cell growth (xCELLigence) and wound-healing assay, we have confirmed that surviving GBM cells after irradiation release signals that can change the functions of endothelial cells HUVEC and non-irradiated tumor cells. In addition to the secretion of known soluble factors (VEGF, uPA), we were able to show using scanning electron microscopy and the Nanoparticle Tracking Analysis (NTA), the release of tumor micro-vesicles (TMVS), whose size was generally less than 500 nm. By NTA and flow cytometry, we have shown that the release of TMVs (exosome + 'shedding vesicles') can be significantly stimulated by irradiation in two lines, in a time-dependent manner. According to the proteomics analysis, soluble factors such as VEGF or IL-8, well known as pro-angiogenic factors, rather contribute to promote the survival or proliferation of HUVEC, while the released TMVs after irradiation, significantly altered the migration abilities of non-irradiated HUVEC and tumor cells. The pro-migratory properties of TMVs could thus contribute to glioblastoma recurrence after irradiation. (author)

Abstract (French)

Dans le glioblastome (GBM), la radiotherapie est un outil therapeutique essentiel. Neanmoins, la recidive post-irradiation est quasiment inevitable, en raison de l'emergence d'une sous-population de cellules cancereuses particulierement radioresistantes presentant une meilleure capacite proliferative, invasive et pro-angiogenique. Notre etude in vitro a cherche a determiner comment les cellules cancereuses survivantes a l'irradiation pouvaient affecter la fonction des cellules tumorales voisines et les cellules endotheliales non irradiees, en focalisant notre attention sur l'echange des signaux intercellulaires, a savoir, les facteurs solubles et les microvesicules tumorales (TMVs). La radiotherapie induit principalement un ralentissement de la proliferation des cellules de glioblastome (T98G et U87) et une mort cellulaire retardee (clonogenique) de 50-60%, sans engendrer d'apoptose. Grace au suivi de la croissance cellulaire a long terme (via le systeme xCELLigence) et un test de blessure, nous avons confirme que les cellules de glioblastome survivantes apres irradiation liberent des signaux qui peuvent modifier les fonctions de cellules endotheliales HUVEC et de cellules tumorales non-irradiees. Outre la secretion de certains facteurs solubles connus (VEGF, uPA), nous avons pu objectiver, en utilisant la microscopie electronique a balayage, le Nanoparticle Tracking Analysis (NTA), la liberation de microvesicules tumorales (TMVs), dont la taille etait globalement inferieure a 500 nm. Par NTA et cytometrie en flux, nous avons montre que cette liberation de TMVs (exosome + 'shedding vesicles'), peut etre significativement stimulee par l'irradiation dans les 2 lignees, de facon temps-dependant. D'apres nos analyses proteomiques, les facteurs solubles tels que le VEGF ou l'IL-8, connus pour etre des facteurs pro-angiogeniques, contribueraient plutot a favoriser la survie, voire la proliferation, des cellules HUVEC, tandis que les TMVs liberees apres irradiation, ont significativement modifie la capacite de migration des HUVEC et des cellules tumorales non-irradiees. Les proprietes pro-migratoires des TMVs pourraient en ce sens, contribuer aux processus de recidive dans les glioblastomes apres irradiation. (auteur)

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Additional details

Additional titles

Original title (French)
Effet de la radiotherapie sur la liberation de microvesicules tumorales par des cellules de glioblastome

Publishing Information

Imprint Pagination
205 p.
Report number
FRNC-TH--9108

Optional Information

Notes
350 refs.; Available from the INIS Liaison Officer for France, see the 'INIS contacts' section of the INIS website for current contact and E-mail addresses: http://www.iaea.org/inis/Contacts/