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Updated: Mar 25, 2026

Assessment of Global DNA Double-Strand End Resection using BrdU-DNA Labeling coupled with Cell Cycle Discrimination Imaging
Published on: April 28, 2021
DNA repair targeted therapy: The past or future of cancer treatment?
Navnath S Gavande1, Pamela S VanderVere-Carozza1, Hilary D Hinshaw2
1Department of Medicine, Indiana University School of Medicine, Indianapolis, IN 46202, United States.
Abstract:
The repair of DNA damage is a complex process that relies on particular pathways to remedy specific types of damage to DNA. The range of insults to DNA includes small, modest changes in structure including mismatched bases and simple methylation events to oxidized bases, intra- and interstrand DNA crosslinks, DNA double strand breaks and protein-DNA adducts. Pathways required for the repair of these lesions include mismatch repair, base excision repair, nucleotide excision repair, and the homology directed repair/Fanconi anemia pathway. Each of these pathways contributes to genetic stability, and mutations in genes encoding proteins involved in these pathways have been demonstrated to promote genetic instability and cancer. In fact, it has been suggested that all cancers display defects in DNA repair. It has also been demonstrated that the ability of cancer cells to repair therapeutically induced DNA damage impacts therapeutic efficacy. This has led to targeting DNA repair pathways and proteins to develop anti-cancer agents that will increase sensitivity to traditional chemotherapeutics. While initial studies languished and were plagued by a lack of specificity and a defined mechanism of action, more recent approaches to exploit synthetic lethal interaction and develop high affinity chemical inhibitors have proven considerably more effective. In this review we will highlight recent advances and discuss previous failures in targeting DNA repair to pave the way for future DNA repair targeted agents and their use in cancer therapy.
Insights
DNA repair pathways fix DNA damage, preventing cancer. Targeting these pathways, especially with new synthetic lethal approaches, enhances cancer therapy effectiveness by increasing sensitivity to treatments.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- DNA damage arises from various insults, necessitating specific repair pathways.
- Defects in DNA repair pathways, such as mismatch repair and base excision repair, are linked to genetic instability and cancer development.
- Cancer cells' ability to repair DNA damage impacts therapeutic outcomes.
Purpose of the Study:
- To review recent advances in targeting DNA repair pathways for cancer therapy.
- To discuss past failures and future directions in developing DNA repair-targeted agents.
- To highlight the role of DNA repair in genetic stability and cancer progression.
Main Methods:
- Review of scientific literature on DNA repair mechanisms and cancer therapy.
- Analysis of genetic mutations in DNA repair proteins and their link to cancer.
- Examination of strategies targeting DNA repair pathways, including synthetic lethality and chemical inhibitors.
Main Results:
- Mutations in DNA repair genes are implicated in all cancers, promoting genetic instability.
- Targeting DNA repair pathways can enhance the efficacy of traditional chemotherapeutics.
- Recent strategies utilizing synthetic lethality and high-affinity inhibitors show promise.
Conclusions:
- DNA repair is crucial for maintaining genetic stability and preventing cancer.
- Targeting DNA repair pathways represents a promising strategy for novel cancer therapies.
- Future research should focus on developing specific and effective DNA repair-targeted agents.
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