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Updated: Aug 3, 2025

Genome-Wide CRISPR Screen for Unveiling Radiosensitive and Radioresistant Genes
Published on: May 23, 2025
Use of CRISPR-based screens to identify mechanisms of chemotherapy resistance
George Alyateem1, Heidi M Wade1, Aaron A Bickert1
1Laboratory of Cell Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, 20892, USA.
Abstract:
Despite the development of new classes of targeted anti-cancer drugs, the curative treatment of metastatic solid tumors remains out of reach owing to the development of resistance to current chemotherapeutics. Although many mechanisms of drug resistance have been described, there is still a general lack of understanding of the many means by which cancer cells elude otherwise effective chemotherapy. The traditional strategy of isolating resistant clones in vitro, defining their mechanism of resistance, and testing to see whether these mechanisms play a role in clinical drug resistance is time-consuming and in many cases falls short of providing clinically relevant information. In this review, we summarize the use of CRISPR technology, including the promise and pitfalls, to generate libraries of cancer cells carrying sgRNAs that define novel mechanisms of resistance. The existing strategies using CRISPR knockout, activation, and inhibition screens, and combinations of these approaches are described. In addition, specialized approaches to identify more than one gene that may be contributing to resistance, as occurs in synthetic lethality, are described. Although these CRISPR-based approaches to cataloguing drug resistance genes in cancer cells are just beginning to be utilized, appropriately used they promise to accelerate understanding of drug resistance in cancer.
Insights
CRISPR technology offers a powerful new way to discover how cancer cells become resistant to chemotherapy. This approach accelerates the identification of novel drug resistance mechanisms, improving cancer treatment strategies.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Metastatic solid tumors remain difficult to cure due to drug resistance.
- Current methods for identifying resistance mechanisms are slow and often not clinically relevant.
Purpose of the Study:
- To review the application of CRISPR technology for identifying novel cancer drug resistance mechanisms.
- To discuss the potential and limitations of CRISPR-based screens in cancer research.
Main Methods:
- Utilizing CRISPR knockout, activation, and inhibition screens to generate cancer cell libraries with sgRNAs.
- Employing specialized approaches to identify multiple genes involved in resistance, including synthetic lethality.
Main Results:
- CRISPR screens can efficiently generate libraries to define novel resistance mechanisms.
- These methods accelerate the discovery of genes contributing to chemotherapy evasion.
Conclusions:
- CRISPR technology holds significant promise for rapidly advancing the understanding of cancer drug resistance.
- Appropriate use of CRISPR-based approaches can significantly accelerate the discovery of novel resistance mechanisms, leading to improved therapeutic strategies.
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