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Updated: Sep 26, 2025

Combination Radiotherapy in an Orthotopic Mouse Brain Tumor Model
Published on: March 6, 2012
Rat and Mouse Brain Tumor Models for Experimental Neuro-Oncology Research
Upasana Sahu1, Rolf F Barth2, Yoshihiro Otani1
1From the Department of Neurosurgery, McGovern Medical School, University of Texas Health Science Center at Houston, Houston, Texas, USA.
Abstract:
Rodent brain tumor models have been useful for developing effective therapies for glioblastomas (GBMs). In this review, we first discuss the 3 most commonly used rat brain tumor models, the C6, 9L, and F98 gliomas, which are all induced by repeated injections of nitrosourea to adult rats. The C6 glioma arose in an outbred Wistar rat and its potential to evoke an alloimmune response is a serious limitation. The 9L gliosarcoma arose in a Fischer rat and is strongly immunogenic, which must be taken into consideration when using it for therapy studies. The F98 glioma may be the best of the 3 but it does not fully recapitulate human GBMs because it is weakly immunogenic. Next, we discuss a number of mouse models. The first are human patient-derived xenograft gliomas in immunodeficient mice. These have failed to reproduce the tumor-host interactions and microenvironment of human GBMs. Genetically engineered mouse models recapitulate the molecular alterations of GBMs in an immunocompetent environment and "humanized" mouse models repopulate with human immune cells. While the latter are rarely isogenic, expensive to produce, and challenging to use, they represent an important advance. The advantages and limitations of each of these brain tumor models are discussed. This information will assist investigators in selecting the most appropriate model for the specific focus of their research.
Insights
Choosing the right rodent brain tumor model is crucial for glioblastoma (GBM) therapy development. This review compares rat and mouse models, highlighting their strengths and weaknesses for research.
Area of Science:
- Neuro-oncology
- Preclinical Cancer Research
- Animal Models of Disease
Background:
- Glioblastomas (GBMs) are aggressive brain tumors requiring effective therapeutic strategies.
- Rodent models are essential tools for preclinical GBM research and drug development.
Purpose of the Study:
- To review and compare commonly used rodent brain tumor models for glioblastoma research.
- To discuss the advantages and limitations of various rat and mouse models for evaluating GBM therapies.
Main Methods:
- Review of established rat glioma models (C6, 9L, F98) induced by nitrosourea.
- Discussion of mouse models including patient-derived xenografts, genetically engineered models, and humanized models.
Main Results:
- Rat models (C6, 9L, F98) have limitations including immunogenicity and incomplete recapitulation of human GBM.
- Patient-derived xenografts in immunodeficient mice fail to replicate the tumor microenvironment.
- Genetically engineered and humanized mouse models offer better recapitulation of GBM molecular features and tumor-host interactions.
Conclusions:
- Each rodent brain tumor model possesses unique advantages and limitations.
- Careful selection of an appropriate model is critical for successful glioblastoma research and therapeutic development.

