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Published on: June 27, 2020
Integrative analysis of Ewing's sarcoma reveals that the MIF-CD74 axis is a target for immunotherapy
Fangzhou He1,2, Jiuhui Xu1,2, Fanwei Zeng1,2
1Department of Musculoskeletal Tumor, Peking University People's Hospital, No. 11 Xizhimen South Street, Beijing, 100044, China.
Background:
Ewing's sarcoma (EwS), a common pediatric bone cancer, is associated with poor survival due to a lack of therapeutic targets for immunotherapy or targeted therapy. Therefore, more effective treatment options are urgently needed.
Methods:
Since novel immunotherapies may address this need, we performed an integrative analysis involving single-cell RNA sequencing, cell function experiments, and humanized models to dissect the immunoregulatory interactions in EwS and identify strategies for optimizing immunotherapeutic efficacy.
Results:
EwS is infiltrated by immunosuppressive myeloid populations, T and B lymphocytes, and natural killer cells. We found that SLC40A1 and C1QA macrophages were associated with a poor prognosis, whereas CD8+ T-cell infiltration was associated with a good prognosis. A comparative analysis of paired samples revealed that in tumors with a good chemotherapeutic response, macrophages presented increased antigen presentation and reduced release of protumor cytokines, whereas CD8+ T cells presented increased cytotoxicity and reduced exhaustion. An interaction analysis revealed a vast immunoregulatory network and identified MIF-CD74 as a crucial immunoregulatory target that can simultaneously promote M2 polarization of macrophages and inhibit CD8+ T-cell infiltration. Importantly, MIF blockade effectively reshaped the tumor immune microenvironment, turning cold tumors hot and inhibiting tumor growth.
Conclusions:
Our integrative analysis revealed that the MIF/CD74 axis is a promising target for the treatment of Ewing sarcoma and provides a rationale for this novel immunotherapy.
Insights
Targeting the MIF/CD74 axis shows promise for Ewing sarcoma (EwS) treatment. Blocking this pathway reshapes the tumor microenvironment, enhancing anti-tumor immunity and inhibiting pediatric bone cancer growth.
Area of Science:
- Oncology
- Immunology
- Pediatric Cancer Research
Background:
- Ewing sarcoma (EwS) is a pediatric bone cancer with poor survival rates.
- Current treatment options are limited due to a lack of immunotherapy and targeted therapy targets.
Purpose of the Study:
- To dissect immunoregulatory interactions in EwS.
- To identify strategies for optimizing immunotherapeutic efficacy in pediatric bone cancer.
Main Methods:
- Integrative analysis using single-cell RNA sequencing.
- Cell function experiments and humanized models.
- Dissection of immunoregulatory interactions in EwS.
Main Results:
- EwS tumors exhibit immunosuppressive myeloid cells, T cells, and NK cells.
- MIF/CD74 identified as a key target, promoting M2 macrophage polarization and inhibiting CD8+ T cell infiltration.
- MIF blockade converted 'cold' tumors to 'hot', inhibiting tumor growth.
Conclusions:
- The MIF/CD74 axis is a promising therapeutic target for Ewing sarcoma.
- This study provides a rationale for novel immunotherapies against pediatric bone cancer.
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