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B7-H3: a promising target for immunotherapy in glioma
Xin-Li Feng1, Gang Su2, Qi Jia1
1Lanzhou University Second Hospital, Lanzhou University, Lanzhou, China.
Abstract:
Glioma is one of the most malignant tumors in the brain, with high tumor heterogeneity. Traditional treatment methods, such as surgery, radiotherapy and chemotherapy, face numerous challenges and still pose serious threats to human health. Therefore, it is urgent to explore new treatment directions. The immune checkpoint B7-H3 has attracted much attention due to its significant immunomodulatory function in various cancers. Studies have shown that it is highly expressed in glioma and lowly expressed in normal brain tissue. It not only has immunosuppressive function and induces immune escape in glioma, but also promotes the proliferation, migration and angiogenesis of glioma cells. Moreover, there are many immunotherapy strategies targeting B7-H3, such as monoclonal antibodies, antibody-drug conjugates (ADC) and chimeric antigen receptor T-cell (CAR-T) therapy. Therefore, B7-H3 is regarded as a potential target for glioma immunotherapy. This article systematically reviews the occurrence and development process of B7-H3 in glioma, changes in the immune microenvironment, and related treatment methods. Through analysis of several databases such as TCGA, CTPAC, HPA and GEPIA, this study explores the expression of B7-H3 in glioma, its correlation with prognosis and its correlation with the glioma immune microenvironment, providing a new research target for the diagnosis and treatment of glioma.
Insights
B7-H3 is highly expressed in malignant glioma, promoting tumor growth and immune evasion. Targeting B7-H3 offers a promising new immunotherapy strategy for glioma treatment.
Area of Science:
- Neuro-oncology
- Immunology
- Cancer Biology
Background:
- Glioma is a highly heterogeneous and malignant brain tumor.
- Conventional treatments like surgery, radiotherapy, and chemotherapy have limitations.
- New therapeutic strategies are urgently needed for effective glioma management.
Purpose of the Study:
- To review the role of immune checkpoint B7-H3 in glioma development.
- To explore B7-H3's impact on the glioma immune microenvironment.
- To discuss B7-H3-targeted immunotherapies for glioma.
Main Methods:
- Systematic review of B7-H3 in glioma occurrence and progression.
- Analysis of TCGA, CTPAC, HPA, and GEPIA databases.
- Exploration of B7-H3 expression, prognosis correlation, and immune microenvironment association.
Main Results:
- B7-H3 is highly expressed in glioma but lowly in normal brain tissue.
- B7-H3 exhibits immunosuppressive functions and promotes glioma cell proliferation, migration, and angiogenesis.
- B7-H3 expression correlates with glioma prognosis and immune microenvironment.
Conclusions:
- B7-H3 is a potential therapeutic target for glioma immunotherapy.
- Targeting B7-H3 may overcome immune escape mechanisms in glioma.
- Further research into B7-H3-based therapies could improve glioma diagnosis and treatment.
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