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Published in: BMC Cancer 1/2009

Open Access 01-12-2009 | Research article

A reproducible brain tumour model established from human glioblastoma biopsies

Authors: Jian Wang, Hrvoje Miletic, Per Ø Sakariassen, Peter C Huszthy, Hege Jacobsen, Narve Brekkå, Xingang Li, Peng Zhao, Sverre Mørk, Martha Chekenya, Rolf Bjerkvig, Per Ø Enger

Published in: BMC Cancer | Issue 1/2009

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Abstract

Background

Establishing clinically relevant animal models of glioblastoma multiforme (GBM) remains a challenge, and many commonly used cell line-based models do not recapitulate the invasive growth patterns of patient GBMs. Previously, we have reported the formation of highly invasive tumour xenografts in nude rats from human GBMs. However, implementing tumour models based on primary tissue requires that these models can be sufficiently standardised with consistently high take rates.

Methods

In this work, we collected data on growth kinetics from a material of 29 biopsies xenografted in nude rats, and characterised this model with an emphasis on neuropathological and radiological features.

Results

The tumour take rate for xenografted GBM biopsies were 96% and remained close to 100% at subsequent passages in vivo, whereas only one of four lower grade tumours engrafted. Average time from transplantation to the onset of symptoms was 125 days ± 11.5 SEM. Histologically, the primary xenografts recapitulated the invasive features of the parent tumours while endothelial cell proliferations and necrosis were mostly absent. After 4-5 in vivo passages, the tumours became more vascular with necrotic areas, but also appeared more circumscribed. MRI typically revealed changes related to tumour growth, several months prior to the onset of symptoms.

Conclusions

In vivo passaging of patient GBM biopsies produced tumours representative of the patient tumours, with high take rates and a reproducible disease course. The model provides combinations of angiogenic and invasive phenotypes and represents a good alternative to in vitro propagated cell lines for dissecting mechanisms of brain tumour progression.
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Metadata
Title
A reproducible brain tumour model established from human glioblastoma biopsies
Authors
Jian Wang
Hrvoje Miletic
Per Ø Sakariassen
Peter C Huszthy
Hege Jacobsen
Narve Brekkå
Xingang Li
Peng Zhao
Sverre Mørk
Martha Chekenya
Rolf Bjerkvig
Per Ø Enger
Publication date
01-12-2009
Publisher
BioMed Central
Published in
BMC Cancer / Issue 1/2009
Electronic ISSN: 1471-2407
DOI
https://doi.org/10.1186/1471-2407-9-465

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