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International experience in the development of patient-derived xenograft models of diffuse intrinsic pontine glioma

  • M. Tsoli
  • , H. Shen
  • , C. Mayoh
  • , L. Franshaw
  • , A. Ehteda
  • , D. Upton
  • , D. Carvalho
  • , M. Vinci
  • , M. H. Meel
  • , D. van Vuurden
  • , A. Plessier
  • , D. Castel
  • , R. Drissi
  • , M. Farrell
  • , J. Cryan
  • , D. Crimmins
  • , J. Caird
  • , J. Pears
  • , S. Francis
  • , L. E. A. Ludlow
  • A. Carai, Angela Mastronuzzi, B. Liu, J. Hansford, N. Gottardo, T. Hassall, M. Kirby, M. Fouladi, C. Hawkins, M. Monje, J. Grill, C. Jones, E. Hulleman, D. S. Ziegler*
*Corresponding author
  • Cancer Institute NSW
  • The Institute of Cancer Research, London
  • Location VUmc
  • Institut Gustave Roussy
  • Cincinnati Children's Hospital Medical Center
  • Royal College of Surgeons in Ireland
  • Children’s Health Ireland
  • Our Lady's Hospital for Sick Children
  • Sydney Children's Hospital
  • IRCCS Ospedale pediatrico Bambino Gesù - Roma
  • The Royal Children's Hospital
  • Princess Margaret Hospital for Children
  • Children's Health Queensland
  • Women's and Children's Hospital Adelaide
  • University of Toronto
  • Lucille Packard Children's Hospital

Research output: Contribution to journalArticle

Abstract

Purpose: Diffuse intrinsic pontine glioma is the most aggressive form of high grade glioma in children with no effective therapies. There have been no improvements in survival in part due poor understanding of underlying biology, and lack of representative in vitro and in vivo models. Recently, it has been found feasible to use both biopsy and autopsy tumors to generate cultures and xenograft models. Methods: To further model development, we evaluated the collective international experience from 8 collaborating centers to develop DIPG pre-clinical models from patient-derived autopsies and biopsies. Univariate and multivariate analysis was performed to determine key factors associated with the success of in vitro and in vivo PDX development. Results: In vitro cultures were successfully established from 57% of samples (84.2% of biopsies and 38.2% of autopsies). Samples transferred in DMEM media were more likely to establish successful culture than those transported in Hibernate A. In vitro cultures were more successful from biopsies (84.2%) compared with autopsies (38.2%) and as monolayer on laminin-coated plates than as neurospheres. Primary cultures successfully established from autopsy samples were more likely to engraft in animal models than cultures established from biopsies (86.7% vs. 47.4%). Collectively, tumor engraftment was more successful when DIPG samples were directly implanted in mice (68%), rather than after culturing (40.7%). Conclusion: This multi-center study provides valuable information on the success rate of establishing patient-derived pre-clinical models of DIPG. The results can lead to further optimization of DIPG model development and ultimately assist in the investigation of new therapies for this aggressive pediatric brain tumor.
Original languageEnglish
Pages (from-to)253-263
Number of pages11
JournalJournal of Neuro-Oncology
Volume141
Issue number2
DOIs
Publication statusPublished - 2019

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

All Science Journal Classification (ASJC) codes

  • Oncology
  • Neurology
  • Clinical Neurology
  • Cancer Research

Keywords

  • Brainstem glioma
  • DIPG
  • H3K27M
  • Neurospheres
  • Patient-derived xenografts
  • PDX

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