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A review on mechanisms of resistance to PARP inhibitors
Chirag Desai1, Anand Pathak2, Sewanti Limaye3
1Medical Oncology, Vedanta Institute of Medical Sciences, Ahmedabad, Gujarat, India.
Abstract:
Standard therapy for advanced ovarian cancer (OC) consists of radical debulking cytoreductive surgery followed by adjuvant chemotherapy. An important risk factor for OC is genetic predisposition, with BRCA1 or BRCA2 mutations accounting for the majority of hereditary OC. Mutation in BRCA ultimately causes accumulation of genetic alterations because of the failure of cells to arrest and repair DNA damage or to undergo apoptosis, resulting in tumorigenesis. Poly (ADP-ribose) polymerase (PARP) inhibitors have emerged as a promising approach for managing BRCA-associated cancers, especially high-grade OC and breast cancers. They lead to synthetic lethality in BRCA-mutated cells by stalling the replication forks in homologous recombination-deficient (HR) cells. Four PARP inhibitors (olaparib, niraparib, rucaparib, and talazoparib) are currently approved by the Food and Drug Administration for OC, breast, and pancreatic cancer indications and are being evaluated for other BRCA-associated cancers. Despite their clinical efficacy, cancer cells generally develop resistance to them through several mechanisms. Understanding these mechanisms is crucial for developing strategies to counter resistance and identify the basic mechanisms of DNA damage response. This review focuses on the mechanism of action of PARP inhibitors, understanding various causes of resistance, and building strategies to overcome PARP inhibitor resistance.
Insights
Poly (ADP-ribose) polymerase (PARP) inhibitors show promise for BRCA-mutated ovarian cancer. This review explores their mechanisms, resistance causes, and strategies to overcome treatment resistance.
Area of Science:
- Oncology
- Genetics
- Pharmacology
Background:
- Advanced ovarian cancer (OC) treatment involves surgery and chemotherapy.
- BRCA1/2 mutations are key risk factors for hereditary OC, leading to DNA repairdefects and tumorigenesis.
- Poly (ADP-ribose) polymerase (PARP) inhibitors offer a targeted therapy for BRCA-mutated cancers.
Purpose of the Study:
- To review the mechanism of action of PARP inhibitors.
- To understand the various mechanisms of resistance to PARP inhibitors.
- To outline strategies for overcoming PARP inhibitor resistance in cancer treatment.
Main Methods:
- Literature review of PARP inhibitor mechanisms.
- Analysis of resistance pathways in BRCA-mutated cancers.
- Synthesis of strategies to combat PARP inhibitor resistance.
Main Results:
- PARP inhibitors induce synthetic lethality in homologous recombination-deficient cells.
- Several resistance mechanisms can emerge, diminishing treatment efficacy.
- Understanding resistance is key to improving therapeutic outcomes.
Conclusions:
- PARP inhibitors are effective against BRCA-associated cancers but resistance is a significant challenge.
- Further research into resistance mechanisms is needed to develop more effective treatment strategies.
- Overcoming PARP inhibitor resistance will improve outcomes for ovarian cancer patients.
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