Therapy model for advanced intracerebral B16 mouse melanoma using radiation therapy combined with immunotherapy
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Summary
It is suggested that the model will be useful for the development and testing of novel combination therapies for brain tumors and Splenocytes and lymph node cells from immunized mice showed increased interferon γ production when cultured with syngeneic tumor cells.
- Type
- article
- Published
- 2013-04-25
- Cited by
- 12
- References
- 43
- OpenAlex
- https://openalex.org/W23615842
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:16966313
Keywords
Remote sensing, Muon, Physics, Astronomy, Computer science
References
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Cited by
- Increasing radiation dose improves immunotherapy outcome and prolongation of tumor dormancy in a subgroup of mice treated for advanced intracerebral melanoma
- Effects of radiation on T regulatory cells in normal states and cancer: mechanisms and clinical implications.
- Radiotherapy and immunotherapy: Can this combination change the prognosis of patients with melanoma brain metastases?
- Role of interferons and immunotherapy in enhancing radiation treatment of cancer
- The Role of Lymphocytes in Radiotherapy-Induced Adverse Late Effects in the Lung
- Myeloid‐derived suppressor cells and T regulatory cells in tumors: unraveling the dark side of the force
- Quality assessment of stereotactic radiosurgery of a melanoma brain metastases model using a mouse-like phantom and the small animal radiation research platform
- Brain Metastasis Cell Lines Panel: a public resource of organotropic cell lines
- Integration of stereotactic radiosurgery or whole brain radiation therapy with immunotherapy for treatment of brain metastases
- Regulatory T Cells in Autoimmunity and Cancer: A Duplicitous Lifestyle
- Radiotherapy in Preclinical Models of Brain Metastases: A Review and Recommendations for Future Studies
- In vivo characterization of brain tumor biomechanics: magnetic resonance elastography in intracranial B16 melanoma and GL261 glioma mouse models
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