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Characterization of discordance between mismatch repair deficiency and microsatellite instability testing may prevent
Birgit S Geurts1,2, Laurien J Zeverijn1,2, Jade M van Berge Henegouwen3
1Division of Molecular Oncology & Immunology, Netherlands Cancer Institute, Amsterdam, The Netherlands.
Abstract:
In the Drug Rediscovery Protocol (DRUP), patients with cancer are treated based on their tumor molecular profile with approved targeted and immunotherapies outside the labeled indication. Importantly, patients undergo a tumor biopsy for whole-genome sequencing (WGS) which allows for a WGS-based evaluation of routine diagnostics. Notably, we observed that not all biopsies of patients with dMMR/MSI-positive tumors as determined by routine diagnostics were classified as microsatellite-unstable by subsequent WGS. Therefore, we aimed to evaluate the discordance rate between routine dMMR/MSI diagnostics and WGS and to further characterize discordant cases. We assessed patients enrolled in DRUP with dMMR/MSI-positive tumors identified by routine diagnostics, who were treated with immune checkpoint blockade (ICB) and for whom WGS data were available. Patient and tumor characteristics, study treatment outcomes, and material from routine care were retrieved from the patient medical records and via Palga (the Dutch Pathology Registry), and were compared with WGS results. Initially, discordance between routine dMMR/MSI diagnostics and WGS was observed in 13 patients (13/121; 11%). The majority of these patients did not benefit from ICB (11/13; 85%). After further characterization, we found that in six patients (5%) discordance was caused by dMMR tumors that did not harbor an MSI molecular phenotype by WGS. In six patients (5%), discordance was false due to the presence of multiple primary tumors (n = 3, 2%) and misdiagnosis of dMMR status by immunohistochemistry (n = 3, 2%). In one patient (1%), the exact underlying cause of discordance could not be identified. Thus, in this group of patients limited to those initially diagnosed with dMMR/MSI tumors by current routine diagnostics, the true assay-based discordance rate between routine dMMR/MSI-positive diagnostics and WGS was 5%. To prevent inappropriate ICB treatment, clinicians and pathologists should be aware of the risk of multiple primary tumors and the limitations of different tests. © 2024 The Pathological Society of Great Britain and Ireland.
Insights
Routine diagnostics for dMMR/MSI-positive tumors showed an 11% discordance with whole-genome sequencing (WGS). This highlights the need for awareness of test limitations to prevent inappropriate immune checkpoint blockade (ICB) treatment in cancer patients.
Area of Science:
- Oncology
- Genomics
- Pathology
Background:
- The Drug Rediscovery Protocol (DRUP) treats cancer patients using targeted and immunotherapies based on tumor molecular profiles.
- Whole-genome sequencing (WGS) of tumor biopsies aids in evaluating routine diagnostics.
- Discordance was noted between routine mismatch repair deficiency (dMMR)/microsatellite instability (MSI)-positive diagnostics and WGS results.
Purpose of the Study:
- To evaluate the discordance rate between routine dMMR/MSI diagnostics and WGS.
- To characterize cases where routine diagnostics and WGS results differ.
- To assess the impact of this discordance on treatment outcomes, specifically immune checkpoint blockade (ICB).
Main Methods:
- Assessed patients in the DRUP protocol with dMMR/MSI-positive tumors by routine diagnostics and available WGS data.
- Retrieved patient and tumor characteristics, treatment outcomes, and pathology data from medical records and Palga (Dutch Pathology Registry).
- Compared routine diagnostic results with WGS findings to identify and analyze discordance.
Main Results:
- An initial discordance rate of 11% (13/121 patients) was observed between routine dMMR/MSI diagnostics and WGS.
- The majority of discordant cases (85%; 11/13) did not benefit from ICB treatment.
- The true assay-based discordance rate, after further characterization, was found to be 5%, attributed to non-MSI phenotypes in dMMR tumors, multiple primary tumors, or immunohistochemistry misdiagnosis.
Conclusions:
- A 5% true discordance rate exists between routine dMMR/MSI diagnostics and WGS in cancer patients.
- Awareness of potential misdiagnosis due to multiple primary tumors or immunohistochemistry limitations is crucial.
- Accurate molecular profiling is essential to guide appropriate ICB treatment decisions and avoid ineffective therapies.

