Department of Gynecology, The Second Affiliated Hospital, Zhejiang University School of Medicine, Zhejiang University, Hangzhou, 310009, People's Republic of China.
Zhejiang Provincial Clinical Research Center for Obstetrics and Gynecology, Hangzhou, 310000, People's Republic of China.
J Transl Med. 2024 Aug 8;22(1):749. doi: 10.1186/s12967-024-05570-4.
The Clustered Regularly Interspaced Short Palindromic Repeat (CRISPR)/Cas9 system, a groundbreaking innovation in genetic engineering, has revolutionized our approach to surmounting complex diseases, culminating in CASGEVY™ approved for sickle cell anemia. Derived from a microbial immune defense mechanism, CRISPR/Cas9, characterized as precision, maneuverability and universality in gene editing, has been harnessed as a versatile tool for precisely manipulating DNA in mammals. In the process of applying it to practice, the consecutive exploitation of novel orthologs and variants never ceases. It's conducive to understanding the essentialities of diseases, particularly cancer, which is crucial for diagnosis, prevention, and treatment. CRISPR/Cas9 is used not only to investigate tumorous genes functioning but also to model disparate cancers, providing valuable insights into tumor biology, resistance, and immune evasion. Upon cancer therapy, CRISPR/Cas9 is instrumental in developing individual and precise cancer therapies that can selectively activate or deactivate genes within tumor cells, aiming to cripple tumor growth and invasion and sensitize cancer cells to treatments. Furthermore, it facilitates the development of innovative treatments, enhancing the targeting efficiency of reprogrammed immune cells, exemplified by advancements in CAR-T regimen. Beyond therapy, it is a potent tool for screening susceptible genes, offering the possibility of intervening before the tumor initiative or progresses. However, despite its vast potential, the application of CRISPR/Cas9 in cancer research and therapy is accompanied by significant efficacy, efficiency, technical, and safety considerations. Escalating technology innovations are warranted to address these issues. The CRISPR/Cas9 system is revolutionizing cancer research and treatment, opening up new avenues for advancements in our understanding and management of cancers. The integration of this evolving technology into clinical practice promises a new era of precision oncology, with targeted, personalized, and potentially curative therapies for cancer patients.
CRISPR/Cas9 系统是基因工程领域的一项突破性创新,它彻底改变了我们克服复杂疾病的方法,最终使 CASGEVY™获得批准用于治疗镰状细胞贫血症。CRISPR/Cas9 源自微生物的免疫防御机制,以基因编辑的精确性、灵活性和通用性为特点,已被用作在哺乳动物中精确操作 DNA 的多功能工具。在将其应用于实践的过程中,对新型同源物和变体的连续开发从未停止。这有助于了解疾病的本质,特别是癌症,这对于诊断、预防和治疗至关重要。CRISPR/Cas9 不仅用于研究肿瘤基因的功能,还用于模拟不同的癌症,为肿瘤生物学、耐药性和免疫逃逸提供了有价值的见解。在癌症治疗中,CRISPR/Cas9 有助于开发针对个体和精确的癌症疗法,可以选择性地激活或失活肿瘤细胞内的基因,旨在削弱肿瘤生长和侵袭,并使癌细胞对治疗敏感。此外,它促进了创新治疗方法的发展,提高了重编程免疫细胞的靶向效率,例如在 CAR-T 方案中的进展。除了治疗之外,它还是筛选易感基因的有力工具,提供了在肿瘤发生或进展之前进行干预的可能性。然而,尽管具有巨大的潜力,但 CRISPR/Cas9 在癌症研究和治疗中的应用伴随着显著的疗效、效率、技术和安全性考虑。需要不断创新技术来解决这些问题。CRISPR/Cas9 系统正在彻底改变癌症研究和治疗,为我们在癌症的理解和管理方面的进展开辟了新的途径。将这项不断发展的技术整合到临床实践中,有望为癌症患者带来靶向、个性化和潜在治愈性的治疗新时代。