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Stemness of the CT-2A Immunocompetent Mouse Brain Tumor Model: Characterization In Vitro
Emanuela Binello1, Zulekha A Qadeer, Harini P Kothari
1Department of Neurosurgery, Mount Sinai School of Medicine, New York, NY, 10029, USA.
Abstract:
Evidence has pointed to brain tumor stem cells (BTSC) as culprits behind human high-grade glioma (hHGG) resistance to standard therapy. Pre-clinical rodent models are the mainstay for testing of new therapeutic strategies. The typical model involves the intracranial injection of human glioma cells into immunocompromised hosts, hindering the evaluation of tumor-host responses and resulting in non-infiltrative tumors. The CT-2A model is an immunocompetent mouse model with potential to overcome these disadvantages. In this study, we confirmed the highly infiltrative nature of intracranial CT-2A tumors and optimized reproducible injection parameters. We then generated neurospheres and established, for the first time, the stemness of this model. CT-2A expression of the BTSC marker, CD133, increased from 2% in monolayer cells to 31% in fully-formed neurospheres. Investigation of three stem cell markers (Oct4, Nanog and Nestin) revealed a distinct stemness signature with monolayer cells expressing Oct4 and Nestin (no Nanog), and neurospheres expressing all three. Additionally, CT-2A cells were more proliferative and invasive than U87 cells, while CT-2A neurospheres were significantly more proliferative and invasive than either monolayer cells in vitro. Taken together, our results show that this model is a valuable tool for pre-clinical testing of novel therapeutics against hHGG and also affords the opportunity for investigation of BTSC in an immunocompetent setting.
Insights
The CT-2A mouse model effectively mimics human high-grade glioma (hHGG) and brain tumor stem cells (BTSC). This immunocompetent model offers a valuable platform for testing new hHGG therapies.
Area of Science:
- Neuroscience
- Oncology
- Immunology
Background:
- Brain tumor stem cells (BTSC) drive resistance in human high-grade glioma (hHGG).
- Current pre-clinical models using immunocompromised hosts limit evaluation of tumor-host interactions and tumor invasiveness.
Purpose of the Study:
- To validate the CT-2A mouse model as an immunocompetent system for studying hHGG.
- To characterize the stemness and invasiveness of CT-2A cells and neurospheres.
Main Methods:
- Intracranial injection of CT-2A cells in mice to confirm infiltrative tumor growth.
- Generation of CT-2A neurospheres to assess stem cell marker expression (CD133, Oct4, Nanog, Nestin).
- In vitro proliferation and invasion assays comparing CT-2A cells/neurospheres with U87 cells.
Main Results:
- CT-2A tumors demonstrated highly infiltrative growth in vivo.
- CT-2A neurospheres exhibited significantly increased expression of BTSC markers (CD133, Oct4, Nanog, Nestin) compared to monolayer cells.
- CT-2A neurospheres showed enhanced proliferation and invasiveness in vitro.
Conclusions:
- The CT-2A model is a robust and immunocompetent platform for pre-clinical hHGG research.
- This model facilitates the investigation of brain tumor stem cells within a relevant tumor-host microenvironment.
