Related Experiment Video
Updated: Jan 20, 2026
Mutator Protein Family: Key Role in DNA Mismatch Repair
Phase II Study of Avelumab in Patients With Mismatch Repair Deficient and Mismatch Repair Proficient
Panagiotis A Konstantinopoulos1, Weixiu Luo1, Joyce F Liu1
1Dana-Farber Cancer Institute, Boston, MA.
Purpose:
Despite the tissue-agnostic approval of pembrolizumab in mismatch repair deficient (MMRD) solid tumors, important unanswered questions remain about the role of immune checkpoint blockade in mismatch repair-proficient (MMRP) and -deficient endometrial cancer (EC).
Methods:
This phase II study evaluated the PD-L1 inhibitor avelumab in two cohorts of patients with EC: (1) MMRD/POLE (polymerase ε) cohort, as defined by immunohistochemical (IHC) loss of expression of one or more mismatch repair (MMR) proteins and/or documented mutation in the exonuclease domain of POLE; and (2) MMRP cohort with normal IHC expression of all MMR proteins. Coprimary end points were objective response (OR) and progression-free survival at 6 months (PFS6). Avelumab 10 mg/kg intravenously was administered every 2 weeks until progression or unacceptable toxicity.
Results:
Thirty-three patients were enrolled. No patient with POLE-mutated tumor was enrolled in the MMRD cohort, and all MMRP tumors were not POLE-mutated. The MMRP cohort was closed at the first stage because of futility: Only one of 16 patients exhibited both OR and PFS6 responses. The MMRD cohort met the predefined primary end point of four ORs after accrual of only 17 patients; of 15 patients who initiated avelumab, four exhibited OR (one complete response, three partial responses; OR rate, 26.7%; 95% CI, 7.8% to 55.1%) and six (including all four ORs) PFS6 responses (PFS6, 40.0%; 95% CI, 16.3% to 66.7%), four of which are ongoing as of data cutoff date. Responses were observed in the absence of PD-L1 expression. IHC captured all cases of MMRD subsequently determined by polymerase chain reaction or genomically via targeted sequencing.
Conclusion:
Avelumab exhibited promising activity in MMRD EC regardless of PD-L1 status. IHC for MMR assessment is a useful tool for patient selection. The activity of avelumab in MMRP/non-POLE-mutated ECs was low.
Insights
Avelumab showed promising activity in mismatch repair-deficient (MMRD) endometrial cancer (EC), regardless of PD-L1 expression. However, its efficacy was limited in mismatch repair-proficient (MMRP) EC.
Area of Science:
- Oncology
- Immunotherapy
- Genitourinary Cancer
Background:
- Immune checkpoint blockade has shown efficacy in mismatch repair-deficient (MMRD) solid tumors.
- The role of such therapies in mismatch repair-proficient (MMRP) and -deficient endometrial cancer (EC) requires further investigation.
Purpose of the Study:
- To evaluate the efficacy of the PD-L1 inhibitor avelumab in patients with MMRD and MMRP endometrial cancer.
- To assess objective response (OR) and progression-free survival at 6 months (PFS6) as primary endpoints.
Main Methods:
- A phase II study enrolled patients with EC in two cohorts: MMRD (defined by IHC or POLE mutation) and MMRP.
- Avelumab was administered intravenously at 10 mg/kg every two weeks.
- Immunohistochemistry (IHC) was used for mismatch repair (MMR) protein assessment.
Main Results:
- The MMRP cohort was closed early due to futility, with only one patient achieving both OR and PFS6 response.
- The MMRD cohort met its primary endpoint, with an OR rate of 26.7% (4/15 patients) and a PFS6 rate of 40.0% (6/15 patients).
- Responses in the MMRD cohort were observed irrespective of PD-L1 expression, and IHC accurately identified MMRD cases.
Conclusions:
- Avelumab demonstrated promising activity in MMRD endometrial cancer, highlighting the utility of IHC for MMR assessment in patient selection.
- The efficacy of avelumab was limited in MMRP/non-POLE-mutated endometrial cancer.
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