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Ionizing Radiation Enhances Prognostically Significant Cellular Immunity Programs in the Brain Metastasis
Kazutaka Fukumura1, Peixin Jiang2, Debra Nana Yeboa3
1Department of Translational Molecular Pathology, University of Texas MD Anderson Cancer Center, Houston, Texas.
Purpose:
Brain metastasis (BM) is a deadly complication of systemic malignancy that has been associated with defective cellular immunity. We sought to characterize the foundational elements and clinical relevance of BM-associated immunosuppression using integrated molecular profiling in primary patient material.
Experimental Design:
Retrospective patient tissue cohorts of breast (n = 153) and lung (n = 153) cancer BM were stratified by histopathologic scoring of tumor-infiltrating lymphocytes (TIL) and clinical outcome, with a large subset of breast cancer samples further analyzed by T-cell receptor sequencing (TCR-seq) and RNA sequencing (RNA-seq). An ongoing clinical trial comparing pre- and postoperative stereotactic radiosurgery (SRS)/stereotactic radiotherapy (SRT) in BM management was then leveraged to dissect radiation-induced immune responses by TCR- and RNA-seq.
Results:
Patients with high-grade histopathologic TIL infiltration and enriched TCR diversity demonstrated favorable prognoses in breast and lung cancer BM. Moreover, SRS/SRT treatment enhanced TCR diversity in the BM microenvironment, along with signatures of antigen processing and presentation. Finally, integrated analysis demonstrated that IR seemed to reactivate immune microenvironmental signatures normally suppressed in BM and upregulate immune signaling pathways correlated with favorable outcomes in patients with breast cancer BM.
Conclusions:
High TCR diversity in BM is associated with improved prognosis and highlights therapeutically tractable targets within the immune microenvironment. Moreover, we show in a prospective clinical trial that IR enhances T-cell-mediated immune responses, upregulating antigen presentation and enhancing TCR diversity in BM. These results argue for increased therapeutic investigations of radiation-induced immunomodulatory effects in BM, potentially in association with immune checkpoint inhibition.
Insights
High T-cell receptor diversity in brain metastasis (BM) correlates with better outcomes. Radiation therapy boosts immune responses in BM, suggesting new therapeutic strategies for cancer patients.
Area of Science:
- Oncology
- Immunology
- Genomics
Background:
- Brain metastasis (BM) is a severe complication of cancer, often linked to impaired immune function.
- Understanding BM-associated immunosuppression is crucial for developing effective treatments.
Purpose of the Study:
- To investigate the molecular characteristics and clinical significance of immunosuppression in brain metastasis.
- To analyze the impact of radiation therapy on the immune microenvironment in BM.
Main Methods:
- Integrated molecular profiling (T-cell receptor sequencing, RNA sequencing) of patient-derived breast and lung cancer BM tissues.
- Histopathological scoring of tumor-infiltrating lymphocytes (TILs) and correlation with clinical outcomes.
- Analysis of immune responses in a clinical trial of stereotactic radiosurgery/radiotherapy (SRS/SRT) for BM.
Main Results:
- Higher TIL infiltration and T-cell receptor (TCR) diversity were associated with favorable prognoses in breast and lung cancer BM.
- SRS/SRT treatment increased TCR diversity and antigen processing/presentation signatures in the BM microenvironment.
- Radiation therapy reactivated suppressed immune signatures and upregulated pathways linked to better outcomes in breast cancer BM.
Conclusions:
- Elevated TCR diversity in BM is a marker of favorable prognosis and indicates potential therapeutic targets.
- Radiation therapy enhances T-cell-mediated immunity in BM by increasing TCR diversity and antigen presentation.
- Further research into radiation-induced immunomodulation in BM, possibly combined with immune checkpoint inhibitors, is warranted.
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