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Published on: August 2, 2024
Overcoming PARPi resistance: Preclinical and clinical evidence in ovarian cancer
M Chiappa1, F Guffanti1, F Bertoni2
1Laboratory of Molecular Pharmacology, Department of Oncology, Istituto di Ricerche Farmacologiche Mario Negri IRCCS, Milan, Italy.
Abstract:
Ovarian cancer is the fifth cause of cancer-related deaths in women with high grade serous carcinoma (HGSOC) representing the most common histological subtype. Approximately 50 % of HGSOC are characterized by deficiency in homologous recombination (HR), one of the main cellular pathways to repair DNA double strand breaks and one of the well-described mechanisms is the loss of function of the BRCA1 or BRCA2 genes. Inhibition of the poly-ADP-ribose polymerase (PARP) is synthetic lethal with HR deficiency and the use of PARP inhibitors (PARPi) has significantly improved the outcome of patients with HGSOC with a greater benefit in patients with BRCA1/2 deficient tumors. However, intrinsic or acquired resistance to PARPi inevitably occurs in most HGSOC patients. Distinct heterogeneous mechanisms underlying the resistance to PARPi have been described, including a decrease in intracellular drug levels due to upregulation of multidrug efflux pumps, loss of expression/inactivating mutations in the PARP1 protein, restoration of HR and the protection of the replicative fork. Deciphering the molecular mechanisms of resistance to PARPi is of paramount importance towards the development of new treatment strategies and/or novel pharmacological agents to overcome this chemoresistance and optimize the treatment regimen for individual HGSOC patients. The current review summarizes the mechanisms underlying the resistance to PARPi, the available preclinical and clinical data on new combination treatment strategies (with chemotherapy, anti-angiogenic agents and immune checkpoint inhibitors) as well as agents under investigation which target the DNA damage response.
Insights
High-grade serous ovarian cancer (HGSOC) resistance to PARP inhibitors (PARPi) is a major challenge. Understanding resistance mechanisms is key to developing new treatments for ovarian cancer patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- High-grade serous ovarian cancer (HGSOC) is a leading cause of cancer death in women.
- Approximately 50% of HGSOC cases exhibit homologous recombination (HR) deficiency, often due to BRCA1/2 gene mutations.
- PARP inhibitors (PARPi) show efficacy in HR-deficient HGSOC, but resistance is common.
Purpose of the Study:
- To review the molecular mechanisms of intrinsic and acquired resistance to PARP inhibitors (PARPi) in HGSOC.
- To summarize current preclinical and clinical data on combination treatment strategies for overcoming PARPi resistance.
- To highlight novel agents targeting the DNA damage response for HGSOC treatment.
Main Methods:
- Literature review of preclinical and clinical studies on PARPi resistance in HGSOC.
- Analysis of molecular mechanisms driving resistance, including drug efflux, PARP1 alterations, HR restoration, and fork protection.
- Evaluation of combination therapies involving chemotherapy, anti-angiogenic agents, and immune checkpoint inhibitors.
Main Results:
- Resistance to PARPi in HGSOC arises from diverse mechanisms.
- Upregulation of drug efflux pumps, PARP1 inactivation, HR restoration, and replicative fork protection contribute to resistance.
- Combination strategies and novel DNA damage response targeting agents show promise in preclinical and clinical settings.
Conclusions:
- Deciphering PARPi resistance mechanisms is crucial for developing effective HGSOC treatments.
- Combination therapies and novel agents targeting DNA damage response pathways are essential for overcoming resistance.
- Optimizing treatment regimens based on individual HGSOC patient profiles is critical.
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