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Published on: February 24, 2023
PARP inhibitors in ovarian cancer
1UCL Cancer Institute, University College London, London, UK j.ledermann@ucl.ac.uk.
Background:
Slow progress in improving the outcome of ovarian cancer with chemotherapy over the last decade has stimulated research into molecularly targeted therapy. Poly(ADP-ribose) polymerase (PARP) inhibitors target DNA repair and are specifically active in cells that have impaired repair of DNA by the homologous recombination (HR) pathway. Cells with mutated BRCA function have HR deficiency (HRD), which is also present in a significant proportion of non-BRCA-mutated ovarian cancer.
Design:
In the last decade, olaparib, the first and most-investigated oral PARP inhibitor, has undergone phase I-III trials as a single agent, in comparison with and in addition to chemotherapy, and as a maintenance therapy following chemotherapy.
Results:
The greatest benefit to-date has been in the maintenance setting, prolonging the progression-free survival of high-grade serous ovarian cancer with a BRCA1/2 mutation. In this group of patients, olaparib has received approval as maintenance following chemotherapy from the EMA, and accelerated approval as a single agent in women who have had three or more lines of therapy. Olaparib can be given for a prolonged period with few significant side-effects in most patients. Similar trials with other PARP inhibitors (rucaparib, niraparib and veliparib) are in progress and include non-BRCA-mutated ovarian cancer. Second-generation studies are exploring the combination of PARP inhibitors with anti-angiogenic drugs.
Conclusions:
PARP inhibitors represent a step change in the management of ovarian cancer. BRCA mutations are the first genotypic predictive markers in ovarian cancer and can be used to select patients who will most likely benefit from PARP inhibitors. BRCA testing is now becoming a routine part of the evaluation of women with ovarian cancer, and tests for HRD are being used to evaluate PARP inhibitors in an extended population of non-BRCA-mutated ovarian cancer.
Insights
Poly(ADP-ribose) polymerase (PARP) inhibitors offer a significant advancement in ovarian cancer treatment, particularly for patients with BRCA mutations. These targeted therapies improve progression-free survival, especially when used as maintenance therapy after chemotherapy.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Ovarian cancer treatment has seen slow progress with chemotherapy, driving research into targeted therapies.
- Poly(ADP-ribose) polymerase (PARP) inhibitors target DNA repair pathways, showing efficacy in cancer cells with homologous recombination (HR) deficiency.
- HR deficiency, common in BRCA-mutated ovarian cancer, is also found in a notable proportion of non-BRCA-mutated cases.
Purpose of the Study:
- To evaluate the efficacy of olaparib, a PARP inhibitor, in ovarian cancer treatment.
- To explore the role of PARP inhibitors in both BRCA-mutated and non-BRCA-mutated ovarian cancer.
- To assess PARP inhibitors as maintenance therapy and single-agent treatment.
Main Methods:
- Phase I-III clinical trials of olaparib as a single agent, in combination with chemotherapy, and as maintenance therapy.
- Ongoing trials with other PARP inhibitors (rucaparib, niraparib, veliparib) in ovarian cancer, including non-BRCA-mutated populations.
- Investigation of PARP inhibitors in combination with anti-angiogenic drugs in second-generation studies.
Main Results:
- Olaparib demonstrated significant benefit in prolonging progression-free survival as maintenance therapy for high-grade serous ovarian cancer with BRCA1/2 mutations.
- Olaparib received EMA approval for maintenance therapy post-chemotherapy and accelerated approval as a single agent for patients with at least three prior lines of therapy.
- Olaparib is generally well-tolerated for prolonged use, with ongoing trials exploring other PARP inhibitors and combinations.
Conclusions:
- PARP inhibitors represent a major advancement in managing ovarian cancer.
- BRCA mutations serve as the first genotypic predictive markers for PARP inhibitor efficacy in ovarian cancer.
- BRCA testing is becoming standard, and HR deficiency testing is expanding PARP inhibitor evaluation to a broader patient group.
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