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Updated: Aug 30, 2025

Detection and Monitoring of Tumor Associated Circulating DNA in Patient Biofluids
Published on: June 8, 2019
Circulating SOD2 Is a Candidate Response Biomarker for Neoadjuvant Therapy in Breast Cancer
Mercè Juliachs1, Mireia Pujals1, Chiara Bellio1
1Vall d'Hebron Institut of Oncology (VHIO), 08035 Barcelona, Spain.
Abstract:
There is a great need for non-invasive tools that inform of an early molecular response to cancer therapeutic treatment. Here, we tested the hypothesis that proteolytically resistant proteins could be candidate circulating tumor biomarkers for cancer therapy. Proteins resistant to proteolysis are drastically under-sampled by current proteomic workflows. These proteins could be reliable sensors for the response to therapy since they are likely to stay longer in circulation. We selected manganese superoxide dismutase (SOD2), a mitochondrial redox enzyme, from a screening of proteolytic resistant proteins in breast cancer (BC). First, we confirmed the robustness of SOD2 and determined that its proteolytic resistance is mediated by its quaternary protein structure. We also proved that the release of SOD2 upon chemotherapy treatment correlates with cell death in BC cells. Then, after confirming that SOD2 is very stable in human serum, we sought to measure its circulating levels in a cohort of BC patients undergoing neoadjuvant therapy. The results showed that circulating levels of SOD2 increased when patients responded to the treatment according to the tumor shrinkage during neoadjuvant chemotherapy. Therefore, the measurement of SOD2 levels in plasma could improve the non-invasive monitoring of the therapeutic treatment in breast cancer patients. The identification of circulating biomarkers linked to the tumor cell death induced by treatment could be useful for monitoring the action of the large number of cancer drugs currently used in clinics. We envision that our approach could help uncover candidate tumor biomarkers to measure a tumor's response to cancer therapy in real time by sampling the tumor throughout the course of treatment.
Insights
Manganese superoxide dismutase (SOD2), a robust protein, shows increased levels in breast cancer patients responding to chemotherapy. Measuring SOD2 may offer a new non-invasive tool for monitoring cancer therapy effectiveness.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Non-invasive tools are needed to monitor early molecular responses to cancer therapy.
- Proteolytically resistant proteins are under-sampled but could serve as reliable circulating tumor biomarkers.
- Manganese superoxide dismutase (SOD2) was identified as a candidate due to its proteolytic resistance.
Purpose of the Study:
- To test the hypothesis that proteolytically resistant proteins, specifically SOD2, can serve as circulating tumor biomarkers for cancer therapy.
- To evaluate SOD2 as a potential non-invasive indicator of therapeutic response in breast cancer.
Main Methods:
- Assessed the proteolytic resistance and structural basis of SOD2.
- Correlated SOD2 release with cell death in breast cancer cells following chemotherapy.
- Measured circulating SOD2 levels in breast cancer patients undergoing neoadjuvant therapy.
Main Results:
- SOD2's proteolytic resistance is linked to its quaternary structure.
- SOD2 release correlated with chemotherapy-induced cell death in breast cancer cells.
- Circulating SOD2 levels increased in patients who responded to neoadjuvant chemotherapy, indicated by tumor shrinkage.
Conclusions:
- Circulating SOD2 levels can potentially serve as a non-invasive biomarker for monitoring therapeutic treatment response in breast cancer.
- This approach may aid in real-time assessment of tumor response to various cancer therapies.
- Further research could uncover more circulating biomarkers for real-time cancer therapy monitoring.

