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An Orthotopic Model of Serous Ovarian Cancer in Immunocompetent Mice for in vivo Tumor Imaging and Monitoring of Tumor Immune Responses
Published on: November 28, 2010
Lynch syndrome-associated epithelial ovarian cancer and its immunological profile
Maria Rasmussen1, Kevin Lim1, Eva Rambech2
1Department of Clinical Research, Copenhagen University Hospital - Amager and Hvidovre, Copenhagen, Denmark.
Introduction:
Lynch syndrome is a multi-tumor syndrome characterized by mismatch repair deficiency (MMR-d), microsatellite instability (MSI), and increased tumor-infiltrating lymphocytes (TILs) making these tumors candidates for treatment with immune checkpoint inhibitors. However, response may depend on tumor-induced immune evasion mechanisms, e.g. loss of Beta-2-Microglobulin (B2M) or upregulation of programmed death protein ligand 1 (PD-L1). We investigated the immune response and B2M and PD-L1 expression in Lynch syndrome-associated ovarian cancers.
Methods:
We successfully analyzed 30 Lynch syndrome-associated epithelial ovarian cancers collected through the Danish Hereditary Non-Polyposis Colorectal Cancer (HNPCC) register. MMR-d, MSI, immune response (CD3, CD8, and CD68), and immune evasion mechanisms (B2M and PD-L1) were investigated. Statistical associations between these markers were evaluated in addition to survival in relation to B2M/PD-L1.
Results:
Of the 29 evaluable tumors, 27 were MMR-d (93.1%). Likewise of 26 evaluable tumors, 14 were MSI (53.8%). MMR-d/MMR-proficiency associated with MSI/MSS in 60.0%. Half of the ovarian tumors presented with high levels of TILs. Loss of B2M expression was observed in 46.7% of the tumors, while expression of PD-L1 was seen in 28.0% of the cases. There was no association between B2M/PD-L1 and MSI/TILs/survival. Loss of B2M was often seen in tumors with low TILs (p = 0.056 or p = 0.059 for CD3 and CD8 positive cells, respectively).
Conclusion:
MMR-d, MSI, and TILs are also seen in Lynch syndrome-associated ovarian cancers making these potential candidates for checkpoint-based immunotherapy. The clinical impact from immune evasion through loss of B2M needs to be investigated further in larger cohorts.
Insights
Lynch syndrome-associated ovarian cancers show mismatch repair deficiency, microsatellite instability, and tumor-infiltrating lymphocytes, indicating potential for immunotherapy. However, immune evasion mechanisms like Beta-2-Microglobulin loss require further study in larger patient groups.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Lynch syndrome is a hereditary cancer predisposition associated with mismatch repair deficiency (MMR-d) and microsatellite instability (MSI).
- These characteristics, along with increased tumor-infiltrating lymphocytes (TILs), suggest Lynch syndrome-associated tumors may respond to immune checkpoint inhibitors.
- Tumor-induced immune evasion mechanisms, such as Beta-2-Microglobulin (B2M) loss or programmed death protein ligand 1 (PD-L1) upregulation, can limit immunotherapy efficacy.
Purpose of the Study:
- To investigate the immune response, B2M, and PD-L1 expression in Lynch syndrome-associated ovarian cancers.
- To evaluate the association between these markers and patient survival.
Main Methods:
- Analysis of 30 Lynch syndrome-associated epithelial ovarian cancers.
- Assessment of MMR-d, MSI, TILs (CD3, CD8, CD68), B2M, and PD-L1 expression.
- Statistical evaluation of associations between markers and survival.
Main Results:
- High prevalence of MMR-d (93.1%) and MSI (53.8%) observed in the cohort.
- Approximately half of the tumors exhibited high TILs.
- Loss of B2M expression occurred in 46.7% of tumors, and PD-L1 expression in 28.0%. No significant association was found between B2M/PD-L1 and MSI, TILs, or survival, though B2M loss trended with lower TILs.
Conclusions:
- Lynch syndrome-associated ovarian cancers display features (MMR-d, MSI, TILs) making them candidates for immunotherapy.
- Immune evasion via B2M loss is a potential mechanism that warrants further investigation in larger cohorts to determine its clinical impact.
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