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PARP Inhibitors for Breast Cancer Treatment: A Review
Stefania Morganti1,2,3, Antonio Marra4, Carmine De Angelis5,6
1Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, Massachusetts.
Importance:
Poly(adenosine diphosphate-ribose) polymerase (PARP) inhibitors have revolutionized the treatment of patients with germline BRCA1/2-associated breast cancer, representing the first targeted therapy capable of improving outcomes in patients with hereditary tumors. However, resistance to PARP inhibitors occurs in almost all patients.
Observations:
This narrative review summarizes the biological rationale behind the use of PARP inhibitors in breast cancer, as well as the available evidence, recent progress, and potential future applications of these agents. Recent studies have shown that the benefit of PARP inhibitors extends beyond patients with germline BRCA1/2-associated metastatic breast cancer to patients with somatic BRCA1/2 variants and to those with germline PALB2 alterations. Moreover, these agents proved to be effective both in the metastatic and adjuvant settings. However, patients with metastatic breast cancer usually do not achieve the long-term benefit from PARP inhibitors observed in other tumor types. Mechanisms of resistance have been identified, but how to effectively target them is largely unknown. Ongoing research is investigating both novel therapeutics and new combination strategies to overcome resistance. PARP1-selective inhibitors, by sparing the hematological toxic effects induced by the PARP2 blockade, are promising agents to be combined with chemotherapy, antibody-drug conjugates, and other targeted therapies.
Conclusions And Relevance:
Although the efficacy of PARP inhibitors is well established, many questions persist. Future research should focus on identifying predictive biomarkers and therapeutic strategies to overcome resistance. Integrating well-designed translational efforts into all clinical studies is thereby crucial to laying the groundwork for future insights from ongoing research.
Insights
Poly(adenosine diphosphate-ribose) polymerase (PARP) inhibitors offer targeted therapy for hereditary breast cancer. Overcoming resistance remains a key challenge, driving research into new strategies and combination therapies for improved patient outcomes.
Area of Science:
- Oncology
- Pharmacology
Background:
- Poly(adenosine diphosphate-ribose) polymerase (PARP) inhibitors represent a breakthrough in treating germline BRCA1/2-associated breast cancer.
- Resistance to PARP inhibitors is a significant clinical challenge, limiting long-term efficacy in many patients.
Purpose of the Study:
- To review the biological rationale, evidence, and future directions for PARP inhibitors in breast cancer treatment.
- To explore the expanding role of PARP inhibitors beyond germline BRCA1/2 mutations and their efficacy in different settings.
Main Methods:
- Narrative review of existing literature on PARP inhibitors in breast cancer.
- Analysis of recent clinical studies and emerging resistance mechanisms.
Main Results:
- PARP inhibitors benefit patients with germline BRCA1/2, somatic BRCA1/2, and germline PALB2 alterations in both metastatic and adjuvant settings.
- Mechanisms of resistance are identified, but effective targeting strategies are still under investigation.
- PARP1-selective inhibitors show promise for combination therapies due to reduced toxicity.
Conclusions:
- While PARP inhibitors are effective, overcoming resistance and identifying predictive biomarkers are crucial for future research.
- Translational efforts in clinical studies are essential to advance understanding and develop novel therapeutic strategies.
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