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基于 CRISPR 的疗法:癌症精准医学的新模式。

CRISPR based therapeutics: a new paradigm in cancer precision medicine.

机构信息

National Centre for Cell Science, S P Pune University Campus, Pune, 411007, India.

School of Basic Medical Sciences, S P Pune University, Pune, 411007, India.

出版信息

Mol Cancer. 2022 Mar 25;21(1):85. doi: 10.1186/s12943-022-01552-6.

Abstract

BACKGROUND

Clustered regularly interspaced short palindromic repeat (CRISPR)-CRISPR-associated protein (Cas) systems are the latest addition to the plethora of gene-editing tools. These systems have been repurposed from their natural counterparts by means of both guide RNA and Cas nuclease engineering. These RNA-guided systems offer greater programmability and multiplexing capacity than previous generation gene editing tools based on zinc finger nucleases and transcription activator like effector nucleases. CRISPR-Cas systems show great promise for individualization of cancer precision medicine.

MAIN BODY

The biology of Cas nucleases and dead Cas based systems relevant for in vivo gene therapy applications has been discussed. The CRISPR knockout, CRISPR activation and CRISPR interference based genetic screens which offer opportunity to assess functions of thousands of genes in massively parallel assays have been also highlighted. Single and combinatorial gene knockout screens lead to identification of drug targets and synthetic lethal genetic interactions across different cancer phenotypes. There are different viral and non-viral (nanoformulation based) modalities that can carry CRISPR-Cas components to different target organs in vivo.

CONCLUSION

The latest developments in the field in terms of optimization of performance of the CRISPR-Cas elements should fuel greater application of the latter in the realm of precision medicine. Lastly, how the already available knowledge can help in furtherance of use of CRISPR based tools in personalized medicine has been discussed.

摘要

背景

成簇规律间隔短回文重复 (CRISPR)-CRISPR 相关蛋白 (Cas) 系统是基因编辑工具的最新补充。这些系统通过向导 RNA 和 Cas 核酸酶工程从天然对应物中重新设计。与基于锌指核酸酶和转录激活因子样效应核酸酶的上一代基因编辑工具相比,这些 RNA 导向系统具有更大的可编程性和多重性。CRISPR-Cas 系统为癌症精准医学的个体化治疗提供了巨大的潜力。

正文

讨论了 Cas 核酸酶和基于失活 Cas 的系统的生物学,这些系统与体内基因治疗应用相关。还强调了基于 CRISPR 敲除、CRISPR 激活和 CRISPR 干扰的遗传筛选,这些筛选为在大规模平行测定中评估数千个基因的功能提供了机会。单基因和组合基因敲除筛选导致了在不同癌症表型中鉴定药物靶点和合成致死性遗传相互作用。有不同的病毒和非病毒(基于纳米制剂)方式可以将 CRISPR-Cas 组件携带到体内的不同靶器官。

结论

就优化 CRISPR-Cas 元件的性能而言,该领域的最新进展应该会促进后者在精准医学领域的更大应用。最后,讨论了现有知识如何帮助推进基于 CRISPR 的工具在个性化医学中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d06/8953071/d224e6ce131e/12943_2022_1552_Fig1_HTML.jpg

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