Brain Tumor Mice

Brain tumor mice are laboratory mice that develop or carry brain tumors, providing in vivo models for studying cancer in the complex environment of the nervous system. Tumors may arise through genetic alterations or the introduction of tumor cells, enabling researchers to examine tumor growth, invasion, interactions with surrounding brain tissue, and responses to treatment. These models support cancer research by helping evaluate disease mechanisms, identify therapeutic targets, and test potential drugs before clinical studies. Their results can reveal how brain tumors progress and how treatment strategies might be improved, although findings must be interpreted alongside evidence from cell-based models and human research.

Brain Tumor Mice - Related Videos

Research

JoVE EoE - Immunotherapy

Delivering Effector T Lymphocytes into Mice Carrying Human Brain Tumors

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2025

This video demonstrates a stereotaxic injection technique for administering human effector T lymphocytes into a murine model carrying a human brain tumor. Upon positioning a tumor-bearing anesthetized mouse on a stereotactic frame and creating a burr hole at the injection location on the skull, effector T lymphocytes are injected at the tumor site.

Combination Radiotherapy in an Orthotopic Mouse Brain Tumor Model

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Cited by 9 •

2012

The purpose of this article is to describe the use of an orthotopic glioblastoma model for chemoradiation studies. This article will go though cell processing, implanting, and radiotherapy of the mouse using an intracranial model.

Research

JoVE Journal - Medicine
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In Vivo Optical Imaging of Brain Tumors and Arthritis Using Fluorescent SapC-DOPS Nanovesicles

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Cited by 13 •

2014

We describe a multi-angle rotational optical imaging (MAROI) system for in vivo quantitation of a fluorescent marker delivered by saposin C (SapC)-dioleoylphosphatidylserine (DOPS) nanovesicles. Employing mouse models of cancer and arthritis, we demonstrate how the MAROI signal curve analysis can be used for the precise mapping and biological characterization of disease processes.

Research

JoVE Journal - Neuroscience
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Establishing Intracranial Brain Tumor Xenografts With Subsequent Analysis of Tumor Growth and Response to Therapy using Bioluminescence Imaging

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Cited by 104 •

2010

Luciferase-modified human brain tumor xenografts can be established intracranially in athymic mice, with subsequent monitoring of tumor growth and response to therapy using bioluminescence imaging. In combination with survival analysis, bioluminescence monitoring is an essential research tool for pre-clinical testing of therapies being considered for treating brain tumors.

Tumor Treating Fields Application in Human Brain Tumor Models: A Non-invasive Technique to Deliver Alternating Electric Fields to Human Brain for Treating Brain Tumor

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2023

This video demonstrates the application of Tumor Treating Fields or TTFields in human brain tumor models. This non-invasive technique delivers low-intensity alternating electric fields directly to the brain, resulting in inhibition of cell division and subsequent apoptosis.

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