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Unveiling the potential of gene editing techniques in revolutionizing Cancer treatment: A comprehensive overview
Pankaj Garg1, Gargi Singhal2, Siddhika Pareek3
1Department of Chemistry, GLA University, Mathura, Uttar Pradesh 281406, India.
Abstract:
Gene editing techniques have emerged as powerful tools in biomedical research, offering precise manipulation of genetic material with the potential to revolutionize cancer treatment strategies. This review provides a comprehensive overview of the current landscape of gene editing technologies, including CRISPR-Cas systems, base editing, prime editing, and synthetic gene circuits, highlighting their applications and potential in cancer therapy. It discusses the mechanisms, advantages, and limitations of each gene editing approach, emphasizing their transformative impact on targeting oncogenes, tumor suppressor genes, and drug resistance mechanisms in various cancer types. The review delves into population-level interventions and precision prevention strategies enabled by gene editing technologies, including gene drives, synthetic gene circuits, and precision prevention tools, for controlling cancer-causing genes, targeting pre-cancerous lesions, and implementing personalized preventive measures. Ethical considerations, regulatory challenges, and future directions in gene editing research for cancer treatment are also addressed. This review highlights how gene editing could revolutionize precision medicine by enhancing patient care and advancing cancer treatments with targeted, personalized methods. For these benefits to be fully realized, collaboration among researchers, doctors, regulators, and patient advocates is crucial in fighting cancer and meeting clinical needs.
Insights
Gene editing technologies like CRISPR offer precise cancer treatment strategies by targeting oncogenes and tumor suppressors. These advancements promise to revolutionize precision medicine and cancer prevention through personalized approaches.
Area of Science:
- Biomedical Research
- Genetics
- Oncology
Background:
- Gene editing technologies provide precise genetic manipulation capabilities.
- These tools hold significant potential for transforming cancer treatment strategies.
Purpose of the Study:
- To provide a comprehensive overview of current gene editing technologies for cancer therapy.
- To discuss applications, mechanisms, advantages, and limitations of gene editing in oncology.
- To explore population-level interventions and precision prevention strategies enabled by gene editing.
Main Methods:
- Review of CRISPR-Cas systems, base editing, prime editing, and synthetic gene circuits.
- Analysis of gene editing's impact on oncogenes, tumor suppressor genes, and drug resistance.
- Examination of gene drives, synthetic gene circuits, and precision prevention tools.
Main Results:
- Gene editing technologies demonstrate transformative potential in targeting cancer-related genes.
- Applications include personalized cancer treatment, prevention, and overcoming drug resistance.
- Ethical and regulatory considerations are critical for clinical translation.
Conclusions:
- Gene editing is poised to revolutionize precision medicine in cancer care.
- Targeted and personalized gene editing methods offer enhanced patient outcomes.
- Collaboration is essential to realize the full potential of gene editing in fighting cancer.
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