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CRISPR-Cas13 System as a Promising and Versatile Tool for Cancer Diagnosis, Therapy, and Research
Fahreddin Palaz1, Ali Kerem Kalkan2, Özgür Can3
1Faculty of Medicine, Hacettepe University, Ankara 06100, Turkey.
Abstract:
Over the past decades, significant progress has been made in targeted cancer therapy. In precision oncology, molecular profiling of cancer patients enables the use of targeted cancer therapeutics. However, current diagnostic methods for molecular analysis of cancer are costly and require sophisticated equipment. Moreover, targeted cancer therapeutics such as monoclonal antibodies and small-molecule drugs may cause off-target effects and they are available for only a minority of cancer driver proteins. Therefore, there is still a need for versatile, efficient, and precise tools for cancer diagnostics and targeted cancer treatment. In recent years, the CRISPR-based genome and transcriptome engineering toolbox has expanded rapidly. Particularly, the RNA-targeting CRISPR-Cas13 system has unique biochemical properties, making Cas13 a promising tool for cancer diagnosis, therapy, and research. Cas13-based diagnostic methods allow early detection and monitoring of cancer markers from liquid biopsy samples without the need for complex instrumentation. In addition, Cas13 can be used for targeted cancer therapy through degrading and manipulating cancer-associated transcripts with high efficiency and specificity. Moreover, Cas13-mediated programmable RNA manipulation tools offer invaluable opportunities for cancer research, identification of drug-resistance mechanisms, and discovery of novel therapeutic targets. Here, we review and discuss the current use and potential applications of the CRISPR-Cas13 system in cancer diagnosis, therapy, and research. Thus, researchers will gain a deep understanding of CRISPR-Cas13 technologies, which have the potential to be used as next-generation cancer diagnostics and therapeutics.
Insights
The CRISPR-Cas13 system offers a versatile tool for cancer research, diagnosis, and therapy. This RNA-targeting technology enables precise detection and treatment of cancers, addressing limitations of current methods.
Area of Science:
- Biotechnology
- Molecular Biology
- Oncology
Background:
- Precision oncology relies on molecular profiling for targeted cancer therapies.
- Current diagnostic methods are costly and require complex equipment.
- Existing targeted therapies have limitations, including off-target effects and limited applicability.
Purpose of the Study:
- To review the applications of the CRISPR-Cas13 system in cancer.
- To highlight Cas13's potential as a next-generation tool for cancer diagnostics and therapeutics.
- To discuss the advantages of Cas13 over current cancer research and treatment methods.
Main Methods:
- Review of CRISPR-Cas13 system's biochemical properties and applications.
- Analysis of Cas13's role in cancer diagnostics, including liquid biopsy.
- Exploration of Cas13's therapeutic potential in degrading cancer-associated transcripts.
- Discussion of Cas13-mediated RNA manipulation for cancer research.
Main Results:
- CRISPR-Cas13 system demonstrates unique biochemical properties for RNA targeting.
- Cas13 enables efficient and specific degradation of cancer-associated transcripts.
- Cas13-based diagnostics allow early cancer detection from liquid biopsies without complex instrumentation.
- Cas13 facilitates cancer research, drug resistance studies, and therapeutic target discovery.
Conclusions:
- The CRISPR-Cas13 system presents a promising, versatile, and precise tool for cancer diagnosis, therapy, and research.
- Cas13 technology has the potential to overcome limitations of current cancer treatment and diagnostic approaches.
- Further development and application of CRISPR-Cas13 will advance precision oncology and cancer patient care.
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