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Lack of myeloid cell infiltration as an acquired resistance strategy to immunotherapy
Elham Beyranvand Nejad1, Camilla Labrie1, Ziena Abdulrahman1
1Oncode institute, Medical Oncology, Leiden University Medical Center, Leiden, The Netherlands.
Background:
Immunotherapy of cancer is successful but tumor regression often is incomplete and followed by escape. Understanding the mechanisms underlying this acquired resistance will aid the development of more effective treatments.
Methods:
We exploited a mouse model where tumor-specific therapeutic vaccination results in tumor regression, followed by local recurrence and resistance. In depth studies on systemic, local and tumor intrinsic changes were performed with flow and mass cytometry, immunohistochemistry, transcriptomics and several perturbation studies with inhibitors or agonistic antibodies in mice. Main findings were recapitulated in vaccinated patients.
Results:
Full tumor regression and cure of tumor-bearing mice is dependent on the magnitude of the vaccine-induced T-cell response. Recurrence of tumors did not involve classical immune escape mechanisms, such as antigen-presentation alterations, immune checkpoint expression, resistance to killing or local immune suppression. However, the recurrent tumors displayed a changed transcriptome with alterations in p53, tumor necrosis factor-α and transforming growth factor-β signaling pathways and they became immunologically cold. Remarkably, ex vivo cell-sorted recurrent tumors, directly reinjected in naïve hosts retained their resistance to vaccination despite a strong infiltration with tumor-specific CD8+ T cells, similar to that of vaccine-responsive tumors. The influx of inflammatory mature myeloid effector cells in the resistant tumors, however, was impaired and this turned out to be the underlying mechanisms as restoration of inflammatory myeloid cell infiltration reinstated the sensitivity of these refractory tumors to vaccination. Notably, impaired myeloid cell infiltration after vaccination was also associated with vaccine resistance in patients.
Conclusion:
An immunotherapy-induced disability of tumor cells to attract innate myeloid effector cells formed a major mechanism underlying immune escape and acquired resistance. These data not only stresses the importance of myeloid effector cells during immunotherapy but also demands for new studies to harness their tumoricidal activities.
Insights
Cancer immunotherapy can fail due to acquired resistance. This study reveals that impaired myeloid cell infiltration into tumors is a key mechanism of resistance, hindering effective cancer treatment.
Area of Science:
- Immunology
- Oncology
- Cancer Research
Background:
- Cancer immunotherapy, while successful, often results in incomplete tumor regression and subsequent immune escape.
- Understanding acquired resistance mechanisms is crucial for developing more effective cancer treatments.
Purpose of the Study:
- To investigate the mechanisms of acquired resistance following therapeutic cancer vaccination.
- To identify factors contributing to tumor recurrence and treatment failure after immunotherapy.
Main Methods:
- Utilized a mouse model of therapeutic cancer vaccination with tumor recurrence.
- Employed multi-omics approaches including flow cytometry, mass cytometry, immunohistochemistry, and transcriptomics.
- Validated findings in vaccinated cancer patients.
Main Results:
- Tumor resistance was not due to classical immune escape but altered tumor transcriptomes and an "immunologically cold" state.
- Recurrent tumors resisted vaccination despite CD8+ T cell infiltration.
- Impaired influx of inflammatory myeloid effector cells was identified as the primary resistance mechanism.
Conclusions:
- Therapeutic vaccination failure is linked to an immunotherapy-induced inability of tumor cells to attract innate myeloid effector cells.
- Myeloid effector cells are critical for successful cancer immunotherapy.
- Future strategies should focus on enhancing myeloid cell activity to overcome resistance.
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