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PD-1 Blockade Elicits Ongoing Remission in Two Cases of Refractory Microsatellite-Stable Cancer Harboring a POLE
Kristina Schenck1, Michael Masetti1, Nicole Pfarr2
1Department of Hematology and Oncology, Klinikum Rechts der Isar der TU Muenchen, Munich, Germany.
Introduction:
In the last decade, immune-checkpoint therapy has led to a break-through in the treatment of cancer across all entities, while molecular markers have grown in importance for the choice of the appropriate chemotherapeutic agents. Accordingly, in 2017, the US Food and Drug Administration approved the programmed cell death protein 1 inhibitor pembrolizumab, a tissue agnostic cancer drug, for the treatment of cancer that displays microsatellite instability, regardless of histological entity and site of origin. However, a growing number of studies report that cases of microsatellite-stable (MSS) tumors harboring a DNA polymerase ε (POLE) mutation, a gene associated with proofreading deficiency, leading to an increased tumor mutational burden, likewise benefit from immune-checkpoint therapy.
Case Report:
Here, we present 2 cases - one advanced adenocarcinoma of the ileum and one mixed neuroendocrine non-neuroendocrine neoplasm, both MSS and carrying a POLE mutation - that were refractory to initial chemotherapy but responded on immunotherapy with pembrolizumab.
Conclusion:
Colorectal cancer is a clinically and molecularly heterogenic disease which requires comprehensive genetic testing to screen for rare genetic alterations like POLE mutations to detect tumors harboring an ultramutator phenotype, especially in patients that are refractory to standard chemotherapy.
Insights
Microsatellite-stable tumors with POLE mutations may respond to immune-checkpoint therapy. Comprehensive genetic testing for POLE mutations is crucial, especially for patients refractory to chemotherapy.
Area of Science:
- Oncology
- Genetics
- Immunotherapy
Background:
- Immune-checkpoint inhibitors (ICIs) like pembrolizumab have revolutionized cancer treatment.
- Molecular markers are increasingly vital for guiding chemotherapy selection.
- While programmed cell death protein 1 (PD-1) inhibitors are approved for microsatellite instability-high cancers, emerging evidence suggests benefit in other contexts.
Observation:
- This report details two cases of microsatellite-stable (MSS) tumors with DNA polymerase epsilon (POLE) mutations.
- One case involved advanced ileum adenocarcinoma, the other a mixed neuroendocrine non-neuroendocrine neoplasm.
- Both tumors were refractory to initial chemotherapy regimens.
Findings:
- Both MSS, POLE-mutated tumors demonstrated significant response to pembrolizumab immunotherapy.
- POLE mutations are associated with deficient DNA proofreading and increased tumor mutational burden.
- These findings suggest a potential benefit of ICIs in MSS tumors with POLE mutations.
Implications:
- Colorectal cancer exhibits significant molecular heterogeneity.
- Comprehensive genetic testing, including for POLE mutations, is essential for identifying potential responders to immunotherapy.
- Identifying ultramutator phenotypes in patients refractory to standard chemotherapy may reveal new therapeutic avenues.
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