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Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
Exploiting DNA repair defects in breast cancer: from chemotherapy to immunotherapy
Burak Yasin Aktas1, Gurkan Guner1, Deniz Can Guven1
1a Department of Medical Oncology , Hacettepe University Cancer Institute , Ankara , Turkey.
Abstract:
Introduction: Impaired DNA damage response (DDR) and subsequent genomic instability are associated with the carcinogenic process itself, but it also results in sensitivity of tumor cells to certain drugs and can be exploited to treat cancer by inducing deadly mutations or mitotic catastrophe. Exploiting DDR defects in breast cancer cells has been one of the main strategies in both conventional chemotherapy, targeted therapies, or immunotherapies. Areas covered: In this review, the authors first discuss DDR mechanisms in healthy cells and DDR defects in breast cancer, then focus on current therapies and developments in the treatment of DDR-deficient breast cancer. Expert opinion: Among conventional chemotherapeutics, platinum-based regimens, in particular, seem to be effective in DDR-deficient patients. PARP inhibitors represent one of the successful models of translational research in this area and clinical data showed high efficacy and reasonable toxicity with these agents in patients with breast cancer and BRCA mutation. Recent studies have underlined that some subtypes of breast cancer are highly immunogenic. Promising activity has been shown with immunotherapeutic agents, particularly in DDR-deficient breast cancers. Chemotherapeutics, DNA-repair pathway inhibitors, and immunotherapies might result in further improved outcomes in certain subsets of patients with breast cancer and DDR.
Insights
Exploiting DNA damage response (DDR) defects in breast cancer offers new therapeutic avenues. DDR-deficient tumors show promise with platinum-based drugs, PARP inhibitors, and immunotherapies for improved patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Impaired DNA damage response (DDR) leads to genomic instability, a hallmark of cancer.
- DDR defects in cancer cells can be therapeutically exploited to induce cell death.
- Breast cancer treatment strategies increasingly focus on leveraging DDR deficiencies.
Purpose of the Study:
- To review DDR mechanisms in healthy cells and breast cancer.
- To discuss current and emerging therapies for DDR-deficient breast cancer.
- To highlight the potential of exploiting DDR defects for cancer treatment.
Main Methods:
- Review of existing literature on DNA damage response pathways.
- Analysis of therapeutic strategies targeting DDR-deficient breast cancer.
- Synthesis of clinical data on conventional chemotherapy, targeted therapy, and immunotherapy.
Main Results:
- Platinum-based regimens demonstrate efficacy in DDR-deficient breast cancer patients.
- PARP inhibitors show high efficacy and manageable toxicity in BRCA-mutated breast cancer.
- Immunotherapies exhibit promising activity, especially in immunogenic, DDR-deficient subtypes.
Conclusions:
- Targeting DDR defects is a key strategy in breast cancer therapy.
- A combination of chemotherapy, DNA-repair inhibitors, and immunotherapy holds potential for improved outcomes.
- Personalized treatment approaches based on DDR status are crucial for optimizing patient care.
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