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Updated: Aug 6, 2026

Visualizing DNA Damage Repair Proteins in Patient-Derived Ovarian Cancer Organoids via Immunofluorescence Assays
Published on: February 24, 2023
Mismatch repair and treatment resistance in ovarian cancer
Jozien Helleman1, Iris L van Staveren, Winand N M Dinjens
1Department of Medical Oncology, Erasmus MC/Daniel den Hoed Cancer Center, Rotterdam, The Netherlands. j.helleman@erasmusmc.nl
Background:
The treatment of ovarian cancer is hindered by intrinsic or acquired resistance to platinum-based chemotherapy. The aim of this study is to determine the frequency of mismatch repair (MMR) inactivation in ovarian cancer and its association with resistance to platinum-based chemotherapy.
Methods:
We determined, microsatellite instability (MSI) as a marker for MMR inactivation (analysis of BAT25 and BAT26), MLH1 promoter methylation status (methylation specific PCR on bisulfite treated DNA) and mRNA expression of MLH1, MSH2, MSH3, MSH6 and PMS2 (quantitative RT-PCR) in 75 ovarian carcinomas and eight ovarian cancer cell lines
Results:
MSI was detected in three of the eight cell lines i.e. A2780 (no MLH1 mRNA expression due to promoter methylation), SKOV3 (no MLH1 mRNA expression) and 2774 (no altered expression of MMR genes). Overall, there was no association between cisplatin response and MMR status in these eight cell lines. Seven of the 75 ovarian carcinomas showed MLH1 promoter methylation, however, none of these showed MSI. Forty-six of these patients received platinum-based chemotherapy (11 non-responders, 34 responders, one unknown response). The resistance seen in the eleven non-responders was not related to MSI and therefore also not to MMR inactivation.
Conclusion:
No MMR inactivation was detected in 75 ovarian carcinoma specimens and no association was seen between MMR inactivation and resistance in the ovarian cancer cell lines as well as the ovarian carcinomas. In the discussion, the results were compared to that of twenty similar studies in the literature including in total 1315 ovarian cancer patients. Although no association between response and MMR status was seen in the primary tumor the possible role of MMR inactivation in acquired resistance deserves further investigation.
Insights
Mismatch repair (MMR) inactivation was not found in ovarian cancer specimens or cell lines, showing no link to platinum chemotherapy resistance. Further research is needed for acquired resistance in ovarian cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Ovarian cancer treatment faces challenges due to resistance to platinum-based chemotherapy.
- Understanding the mechanisms of this resistance is crucial for improving patient outcomes.
Purpose of the Study:
- To investigate the frequency of mismatch repair (MMR) inactivation in ovarian cancer.
- To determine the association between MMR inactivation and resistance to platinum-based chemotherapy.
Main Methods:
- Microsatellite instability (MSI) analysis (BAT25, BAT26) was performed as a marker for MMR inactivation.
- MLH1 promoter methylation and mRNA expression of MMR genes (MLH1, MSH2, MSH3, MSH6, PMS2) were analyzed in 75 ovarian carcinomas and 8 cell lines.
Main Results:
- MSI was detected in 3 of 8 cell lines; however, no association was found between cisplatin response and MMR status.
- MLH1 promoter methylation was observed in 7 of 75 ovarian carcinomas, but none exhibited MSI.
- No association was found between MMR inactivation and resistance to platinum-based chemotherapy in either cell lines or patient specimens.
Conclusions:
- MMR inactivation was not detected in the studied ovarian cancer specimens.
- No correlation was established between MMR inactivation and resistance to platinum-based chemotherapy in ovarian cancer.
- The potential role of MMR inactivation in acquired resistance warrants further investigation, especially when compared to existing literature.
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