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Updated: May 28, 2026

Utilization of the Soft Agar Colony Formation Assay to Identify Inhibitors of Tumorigenicity in Breast Cancer Cells
Published on: May 20, 2015
PARP inhibitors--current status and the walk towards early breast cancer
Jennifer Glendenning1, Andrew Tutt
1Guy's and St Thomas's Hospitals and Breakthrough Breast Cancer Research Unit Kings Health Partners AHSC, Research Oncology, 3(rd) Floor Bermondsey Wing, Guys Hospital, Great Maze Pond, London SE1 9RT, UK.
Abstract:
Epithelial carcinomas in general arise as a result of the acquisition of and selection for multiple mutations in a parental somatic cell clone within the tissues of the primary organ of origin. In the last two decades genome caretakers, which function in key areas of DNA damage response, have been recognized as important tumour suppressor genes. Inactivating mutations in these genes occur both as germline and/or somatic mutations with increasing evidence of epigenetic silencing as an additional cause of loss of function. In any event, loss of function in a tumour cell pre-cursor clone leads to accelerated mutation acquisition and underpins the aetiology of the tumour. With increasing understanding of the complex network that is the DNA damage response, signaling pathways already recognized to be central to the establishment of the cancer phenotype are gaining additional roles as controllers of DNA repair. This has relevance to identification of wider populations of patients with tumours susceptible to approaches that target DNA repair deficiency. These have classically been with DNA damaging chemotherapy but the recently developed small molecule inhibitors of DNA repair enzymes such as Poly-ADP polymerases PARP-1 and PARP-2 have been shown to target tumour deficiencies in DNA repair as well sensitizing to DNA damaging therapeutics such as radiation and chemotherapy. Early phase trials with efficacy endpoints have been presented for the PARP inhibitors AG014699, olaparib, veliparib, iniparib and MK4827. The results of the first phase II trials exploring monotherapy PARP inhibitor strategies, which are based on revisiting the concept of synthetic lethality, have emerged and are reviewed herein. The clinical trials that have or are exploring combinations with DNA damaging therapy in these contexts are discussed with particular reference to breast cancer, as are biomarkers that have been proposed and are being investigated to develop optimal drug schedule and patient selection criteria for these DNA repair targeting approaches.
Insights
DNA repair deficiencies in epithelial carcinomas can be targeted using Poly-ADP polymerases (PARP) inhibitors, offering new therapeutic strategies. These inhibitors, like olaparib, show promise in clinical trials for various cancers, especially when combined with DNA damaging therapies.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Epithelial carcinomas develop from accumulated mutations in somatic cells.
- Tumor suppressor genes, particularly genome caretakers involved in DNA damage response, are crucial.
- Loss of function in these genes accelerates mutation acquisition, driving tumor etiology.
Purpose of the Study:
- To review the role of DNA damage response pathways in cancer.
- To explore the therapeutic potential of targeting DNA repair deficiencies.
- To discuss the clinical efficacy and ongoing trials of Poly-ADP polymerases (PARP) inhibitors.
Main Methods:
- Review of early phase clinical trials for PARP inhibitors (e.g., olaparib, veliparib).
- Analysis of monotherapy and combination strategies with DNA damaging agents.
- Investigation of biomarkers for patient selection and drug scheduling.
Main Results:
- PARP inhibitors demonstrate efficacy in targeting tumors with DNA repair deficiencies.
- Clinical trials show promise for PARP inhibitors in monotherapy and combination treatments.
- Biomarker research is ongoing to optimize patient selection and treatment regimens.
Conclusions:
- Targeting DNA repair deficiencies with PARP inhibitors represents a significant advancement in cancer therapy.
- Combination therapies and biomarker-driven approaches are key to maximizing treatment effectiveness.
- Further research and clinical trials are essential to refine these strategies for various epithelial carcinomas, including breast cancer.
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