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Updated: May 1, 2026

Transplantation of Zebrafish Pediatric Brain Tumors into Immune-competent Hosts for Long-term Study of Tumor Cell Behavior and Drug Response
Published on: May 17, 2017
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.
Abstract:
High-throughput screens (HTS) of compound toxicity against cancer cells can identify thousands of potential new drug-leads. But only limited numbers of these compounds can progress to expensive and labor-intensive efficacy studies in mice, creating a 'bottle neck' in the drug development pipeline. Approaches that triage drug-leads for further study are greatly needed. Here we provide an intermediary platform between HTS and mice by adapting mouse models of pediatric brain tumors to grow as orthotopic xenografts in the brains of zebrafish. Freshly isolated mouse ependymoma, glioma and choroid plexus carcinoma cells expressing red fluorescence protein were conditioned to grow at 34 °C. Conditioned tumor cells were then transplanted orthotopically into the brains of zebrafish acclimatized to ambient temperatures of 34 °C. Live in vivo fluorescence imaging identified robust, quantifiable and reproducible brain tumor growth as well as spinal metastasis in zebrafish. All tumor xenografts in zebrafish retained the histological characteristics of the corresponding parent mouse tumor and efficiently recruited fish endothelial cells to form a tumor vasculature. Finally, by treating zebrafish harboring ERBB2-driven gliomas with an appropriate cytotoxic chemotherapy (5-fluorouracil) or tyrosine kinase inhibitor (erlotinib), we show that these models can effectively assess drug efficacy. Our data demonstrate, for the first time, that mouse brain tumors can grow orthotopically in fish and serve as a platform to study drug efficacy. As large cohorts of brain tumor-bearing zebrafish can be generated rapidly and inexpensively, these models may serve as a powerful tool to triage drug-leads from HTS for formal efficacy testing in mice.
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.

