Zebrafish Brain Tumor

Zebrafish brain tumors are naturally occurring or experimentally induced neoplasms in the zebrafish nervous system, providing accessible models for studying cancer biology. Researchers generate these models by activating oncogenes, altering tumor-suppressor pathways, or transplanting fluorescent human tumor cells into the developing brain, where tumor growth and interactions with surrounding tissue can be visualized in living animals. Because zebrafish embryos are small, genetically tractable, and optically transparent, investigators can monitor tumor initiation, angiogenesis, invasion, and responses to candidate therapies. These models support cancer research by linking genetic mechanisms to tumor behavior and enabling efficient drug screening, while complementing mammalian and patient-derived studies.

Zebrafish Brain Tumor - Related Videos

Research

JoVE Journal - Cancer Research
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Transplantation of Zebrafish Pediatric Brain Tumors into Immune-competent Hosts for Long-term Study of Tumor Cell Behavior and Drug Response

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Cited by 22 •

2017

The transplantation of cancer cells is an important tool for the identification of cancer mechanisms and therapeutic responses. Current techniques depend on immune-incompetent animals. Here, we describe a method to transplant zebrafish tumor cells into immune-competent embryos for the long-term analysis of tumor cell behavior and in vivo drug responses.

Research

JoVE EoE - Cancers of the Nervous System

Long-term Orthotopic Transplantation of Tumor Cells into Zebrafish Embryos: An Efficient Method to Deliver Tumor Cells into the Fourth Ventricle of Zebrafish Embryos for Long-term Analysis of Tumor Cell Behavior

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2025

This video demonstrates the orthotopic transplantation of zebrafish brain tumor cells into the fourth ventricle of an immunocompetent zebrafish embryo. This procedure allows for the long-term study of tumor cell invasion and behavior.

Zebrafish Brain Ventricle Injection

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Cited by 72 •

2009

After neural tube formation, the neuroepithelium constricts and folds while the tube fills with embryonic cerebrospinal fluid (eCSF) to form the embryonic brain ventricles. We developed this ventricle injection technique to better visualize the fluid filled space in contrast to the neuroepithelial shape in a live embryo.

Screening for Melanoma Modifiers using a Zebrafish Autochthonous Tumor Model

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Cited by 32 •

2012

A rapid way to screen for melanoma modifiers using a zebrafish autochthonous tumor model is presented. It takes advantage of the miniCoopR vector which allows for expression of candidate melanoma genes in melanocytes. A method to obtain melanoma-free survival curves, an invasion assay, a protocol for antibody staining of scale melanocytes and a melanoma transplantation assay are described.

Brain Cell Isolation from Zebrafish Larvae: A Technique to Obtain Intact Neurons, Macrophages, and Microglia from Zebrafish Brain Tissue

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2023

This video describes a protocol to isolate neurons, macrophages, and microglia from larval zebrafish brains by mechanically disrupting the brain tissue. The purified cell populations can further be used for genomic analysis.

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