Orthotopic models of pediatric brain tumors in zebrafish

C J Eden1, B Ju2, M Murugesan1

  • 1Department of Developmental Neurobiology, St Jude Children's Research Hospital, Memphis, TN, USA.

Oncogene
|April 22, 2014
PubMed

Insights

Zebrafish models enable rapid, cost-effective drug screening for pediatric brain tumors. Mouse tumor cells grow in zebrafish brains, allowing for early efficacy testing before expensive mouse studies.

Area of Science:

  • Oncology
  • Zebrafish models
  • Drug discovery

Background:

  • High-throughput screening (HTS) identifies numerous cancer drug leads.
  • Limited resources bottleneck efficacy studies in mice.
  • Need for intermediate platforms to triage potential drug candidates.

Purpose of the Study:

  • To develop a zebrafish model for orthotopic xenotransplantation of mouse pediatric brain tumors.
  • To establish a platform for assessing drug efficacy in vivo.
  • To create an intermediary step between HTS and mouse studies.

Main Methods:

  • Mouse pediatric brain tumor cells (ependymoma, glioma, choroid plexus carcinoma) were conditioned to grow at 34°C.
  • Tumor cells were transplanted orthotopically into zebrafish brains.
  • In vivo fluorescence imaging tracked tumor growth and metastasis; histological analysis confirmed tumor characteristics and vasculature formation.
  • Zebrafish models were treated with 5-fluorouracil or erlotinib to assess drug efficacy.

Main Results:

  • Successful orthotopic xenograft growth of mouse brain tumors in zebrafish.
  • Quantifiable tumor growth, spinal metastasis, and retention of original tumor histology observed.
  • Tumor xenografts recruited fish endothelial cells to form vasculature.
  • Zebrafish models accurately predicted drug efficacy for ERBB2-driven gliomas.

Conclusions:

  • Mouse brain tumors can grow orthotopically in zebrafish, establishing a novel in vivo model.
  • Zebrafish models provide a rapid, inexpensive platform for drug efficacy assessment.
  • This approach can effectively triage drug leads from HTS, optimizing the drug development pipeline.

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