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Published on: April 28, 2021
Expanding PARP Inhibitor Use in Prostate Cancer Beyond DNA Repair Defects
A F Palma Dos Reis1, L G Faulkner1, I W Lai2
1Early Cancer Institute, University of Cambridge, United Kingdom.
Background:
Prostate cancer (PCa) is the most common malignancy among men in the Western world and a leading cause of cancer-related mortality. Despite advances in molecularly targeted therapies for other cancers, their application in PCa remains limited, underscoring the need for more effective personalised treatments, particularly after progression following taxane-based chemotherapy. Targeted therapies are also less toxic, offering a crucial advantage for the older and frailer PCa population.
Aims:
Poly(ADP-ribose)polymerase inhibitors (PARPi) are currently approved for PCa with DNA repair defects, which represent less than 25% of cases. Recent clinical studies suggest that combining PARPi with androgen receptor signalling inhibitors (ARSI) may extend benefits to a broader cohort, beyond those with established DNA repair deficiencies. This review aims to summarise current evidence to inform research and clinical practice.
Materials And Methods:
Relevant publications were reviewed using PubMed, EMBASE, and Medline, focusing on the genetic landscape of PCa, PARPi mechanism of action, and pre-clinical and clinical data on PARPi use in PCa.
Results:
PARPi/ARSI combinations elicit variable responses. BRCA-mutated PCa demonstrates consistently better outcomes, while PCa with other homologous repair defects (HRD) shows lower benefits. The benefit for non-HRD cohorts remains controversial, and may be confined to specific subsets.
Conclusions:
The therapeutic potential must be weighed against the increased toxicity of combination therapies. Future efforts should focus on developing more tolerable PARPi, optimising combination strategies, refining diagnostic approaches for evaluating DNA repair deficiencies, and identifying molecular pathways driving PARPi response in PCa.
Insights
Combining poly(ADP-ribose)polymerase inhibitors (PARPi) with androgen receptor signalling inhibitors (ARSI) shows variable efficacy in prostate cancer (PCa). While BRCA-mutated PCa benefits most, non-homologous repair deficiency (non-HRD) cohorts show controversial results, necessitating further research into optimized treatment strategies.
Area of Science:
- Oncology
- Genetics
- Pharmacology
Background:
- Prostate cancer (PCa) is a leading cause of cancer mortality in Western countries, with limited targeted therapy options, especially post-chemotherapy progression.
- Targeted therapies offer reduced toxicity, crucial for the elderly PCa patient population.
Purpose of the Study:
- To review current evidence on combining poly(ADP-ribose)polymerase inhibitors (PARPi) with androgen receptor signalling inhibitors (ARSI) for prostate cancer (PCa).
- To explore the potential of these combinations beyond patients with established DNA repair deficiencies.
- To inform future research and clinical practice in PCa treatment.
Main Methods:
- Comprehensive literature review of publications indexed in PubMed, EMBASE, and Medline.
- Focus on prostate cancer genetics, PARPi mechanisms, and pre-clinical/clinical data.
- Analysis of PARPi and ARSI combination therapy outcomes.
Main Results:
- PARPi/ARSI combinations yield variable responses in prostate cancer (PCa).
- BRCA-mutated PCa shows consistent positive outcomes.
- PCa with other homologous repair defects (HRD) demonstrates lesser benefits, and efficacy in non-HRD cohorts remains debated.
Conclusions:
- The therapeutic benefits of PARPi/ARSI combinations must be balanced against increased toxicity.
- Future research should prioritize developing tolerable PARPi, optimizing combination strategies, and refining diagnostic tools for DNA repair deficiencies.
- Identifying molecular drivers of PARPi response in PCa is crucial for personalized treatment.
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