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April 12, 2026Clinical & Translational Immunology0 citationsOpen Access

A characterisation of the immune cells in immunocompetent and immunodeficient mice with orthotopic brain tumors

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BGBryan GardamENEunwoo NamPKParis M. Kollis

Key Points

  • This research aims to fully characterize immune cells in murine models of glioblastoma, addressing gaps in understanding systemic immune responses.
  • Studied murine models of intracranial glioblastoma tumors
  • Utilized high-parameter flow cytometry
  • Performed tissue immunofluorescence staining
  • Analyzed immune cells in brain, draining lymph nodes, spleen, and bone marrow
  • NSG mouse models showed numerous immune perturbations beyond lymphocyte deficits
  • Immunocompetent models exhibited significant changes in brain-resident immune cells compared to controls
  • Observed systemic effects including reductions in monocytes, macrophages, and dendritic cells in the spleen
  • Increases in certain immune cell subsets were noted in bone marrow

Abstract

Abstract Objectives Glioblastoma is characterised by poor survival with few treatment advances for over 20 years. Immunotherapies, which have transformed treatment of other cancers, have been difficult to apply to glioblastoma because of its highly immune‐suppressive microenvironment, and there is a growing appreciation that the disease also induces a global suppression of the systemic immune system. However, immunotherapy research is hampered by the lack of detailed characterisation of the whole immune system in murine brain tumor models, with studies until now having focussed mainly on tumor‐infiltrating immune cells. Methods Here, we have studied common murine models of intracranial brain tumors by using high‐parameter flow cytometry and tissue immunofluorescence staining to fully characterise immune cells in the brain, draining lymph node, spleen and bone marrow. Results The highly immune‐compromised NSG mouse models were striking in their many immune perturbations, which extended beyond the known deficits in lymphocytes. Immunocompetent tumor models had significant changes in brain‐resident immune cells compared to controls, as expected; however, systemic effects were also observed with significant reductions in subsets of monocytes, macrophages and dendritic cells in the spleen and increases in bone marrow. Conclusion Our extensive and quantitative characterisation of the immune system in murine models of glioblastoma will allow for a better‐informed selection of models and advance the search for new immune‐based treatments for this deadly disease.

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Cite This Study

Gardam et al. (2026) studied this question.

synapsesocial.com/papers/69db38274fe01fead37c651bhttps://doi.org/10.1002/cti2.70093
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