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Transfer of Manipulated Tumor-associated Neutrophils into Tumor-Bearing Mice to Study their Angiogenic Potential In Vivo
Published on: July 20, 2019
IFN signaling is associated with radiotherapy response in malignant peripheral nerve sheath tumors
Iowis Zhu1, Julian Chien1,2, Gabriel E Rech3
1Department of Radiation Oncology and.
Abstract:
Patients with malignant peripheral nerve sheath tumors (MPNSTs) have poor outcomes despite multimodal treatment with surgery, radiation, and systemic therapy. The responses to radiotherapy (RT) are mixed, and the biologic mechanisms underlying this heterogeneity in the radiation response of MPNSTs are not understood. Here, we combined bulk and single-cell transcriptomics, genome-wide CRISPR interference screens, and multiplatform molecular analysis across MPNST cells, mouse allograft models, and patients' samples to understand the mediators of the radiation response. Our data revealed that MPNSTs, but not benign plexiform neurofibromas, induced a type I IFN signature that functionally mediated the radiation response. Moreover, irradiation of immunocompetent mouse MPNST allografts led to IFN-mediated T cell recruitment and activation. Both host mouse T cells and intact tumor IFN receptor signaling were required for RT's efficacy in mouse MPNST allografts. Analysis of human MPNST resection specimens demonstrated that increased microenvironmental and CD8+ T cell infiltration were associated with improved local control following RT. These results provide a preclinical rationale for combining immunomodulatory agents targeting IFN signaling to improve radiation responses in MPNSTs and potentially other soft tissue sarcomas.
Insights
Malignant peripheral nerve sheath tumors (MPNSTs) show varied responses to radiation therapy. This study found that type I interferon signaling and T cell infiltration are crucial for radiation efficacy in MPNSTs.
Area of Science:
- Oncology
- Immunology
- Genomics
Background:
- Malignant peripheral nerve sheath tumors (MPNSTs) have poor prognoses despite current treatments.
- The mechanisms driving heterogeneous responses to radiation therapy (RT) in MPNSTs remain unclear.
Purpose of the Study:
- To elucidate the biological mechanisms mediating MPNST response to RT.
- To identify potential therapeutic targets for improving RT outcomes in MPNSTs.
Main Methods:
- Integrated analysis of bulk and single-cell transcriptomics, CRISPR screens, and molecular profiling.
- Utilized MPNST cell lines, mouse allograft models, and human patient samples.
- Investigated the role of type I interferon (IFN) signaling and T cell responses.
Main Results:
- MPNSTs induce a type I IFN signature that functionally mediates radiation response, unlike benign tumors.
- RT efficacy in mouse MPNST models depends on IFN-mediated T cell recruitment and activation.
- Increased CD8+ T cell infiltration in human tumors correlates with improved local control after RT.
Conclusions:
- Type I IFN signaling and T cell-mediated immunity are critical for RT effectiveness in MPNSTs.
- Combining RT with immunomodulatory agents targeting IFN signaling may enhance treatment outcomes for MPNSTs and other sarcomas.

