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Genetic reflection of glioblastoma biopsy material in xenografts: Characterization of 11 glioblastoma xenograft lines by comparative genomic hybridization

  • Judith W.M. Jeuken
  • , Sandra H.E. Sprenger
  • , Pieter Wesseling
  • , Hans J.J.A. Bernsen
  • , Ron F. Suijkerbuijk
  • , Femke Roelofs
  • , Merryn V.E. Macville
  • , H. Jacobus Gilhuis
  • , Jacobus J. Van Overbeeke
  • , Rudolf H. Boerman

Research output: Contribution to journalArticlepeer-review

22 Citations (Scopus)

Abstract

Object. Human tumors implanted as subcutaneous xenografts in nude mice are widely used for the study of tumor biology and therapy. Validation of these models requires knowledge of the genetic makeup of the xenografts. The aim of this study was to establish whether chromosomal imbalances in 11 xenograft lines derived from human glioblastomas multiforme (x-GBMs) are similar to those found in GBM biopsy samples. The authors also studied genetic stability during serial passaging of three xenograft lines. Methods. Chromosomal imbalances in x-GBMS were detected using comparative genomic hybridization (CGH). The authors compared the CGH results in x-GBMs with those in the original GBMs (o-GBMs) that were used to establish three of the xenograft lines and with the GBM biopsy results reported in the literature (1-GBMs). In three xenograft lines two different passages were analyzed. Conclusions. The results show that the chromosomal imbalances in x-GBMs are similar to those in o-GBMs and 1-GBMs, indicating that the GBM xenograft lines used were valid models from a genetic point of view. The CGH analysis of two different passages of three xenograft lines indicates that x-GBMs (like 1-GBMs) show intratumoral genetic heterogeneity and do not acquire chromosomal imbalances as a result of serial passaging.

Original languageEnglish
Pages (from-to)652-658
Number of pages7
JournalJournal of Neurosurgery
Volume92
Issue number4
DOIs
Publication statusPublished - Apr 2000
Externally publishedYes

Keywords

  • Comparative genomic hybridization
  • Glioblastoma multiforme
  • Glioma
  • Oligodendroglioma
  • Xenograft

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