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用于CRISPR-Cas9核糖核蛋白肺部递送的脂质纳米颗粒可实现临床靶点的基因编辑

Lipid Nanoparticles for Lung Delivery of CRISPR-Cas9 Ribonucleoproteins Allow Gene Editing of Clinical Targets.

作者信息

Haley Rebecca M, Padilla Marshall S, El-Mayta Rakan D, Joseph Ryann A, Weber Jesse A, Figueroa-Espada Christian G, Mukalel Alvin J, Ricciardi Adele S, Palanki Rohan, Geisler Hannah C, Jester Matthew T, Davidson Beverly L, Mitchell Michael J

机构信息

Department of Bioengineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.

Raymond G. Perelman Center for Cellular and Molecular Therapeutics, The Children's Hospital of Philadelphia, Philadelphia, Pennsylvania 19104, United States.

出版信息

ACS Nano. 2025 Apr 15;19(14):13790-13804. doi: 10.1021/acsnano.4c16617. Epub 2025 Apr 4.

Abstract

In the past 10 years, CRISPR-Cas9 has revolutionized the gene-editing field due to its modularity, simplicity, and efficacy. It has been applied for the creation of models, to further understand human biology, and toward the curing of genetic diseases. However, there remain significant delivery barriers for CRISPR-Cas9 application in the clinic, especially for and extrahepatic applications. In this work, high-throughput molecular barcoding techniques were used alongside traditional screening methodologies to simultaneously evaluate LNP formulations encapsulating ribonucleoproteins (RNPs) for gene-editing efficiency and biodistribution. This resulted in the identification of a lung-tropic LNP formulation, which shows efficient gene editing in endothelial and epithelial cells within the lung, targeting both model reporter and clinically relevant genomic targets. Further, this LNP shows no off-target indel formation in the liver, making it a highly specific extrahepatic delivery system for lung-editing applications.

摘要

在过去的10年里,CRISPR-Cas9因其模块化、简单性和有效性,给基因编辑领域带来了变革。它已被用于创建模型,以进一步了解人类生物学,并用于治疗遗传疾病。然而,CRISPR-Cas9在临床应用中仍存在重大的递送障碍,特别是在肝内和肝外应用方面。在这项工作中,高通量分子条形码技术与传统筛选方法一起被用于同时评估包裹核糖核蛋白(RNP)的脂质纳米颗粒(LNP)制剂的基因编辑效率和生物分布。这导致鉴定出一种肺靶向性LNP制剂,该制剂在肺内的内皮细胞和上皮细胞中显示出高效基因编辑,可靶向模型报告基因和临床相关基因组靶点。此外,这种LNP在肝脏中未显示脱靶插入缺失形成,使其成为用于肺部编辑应用的高度特异性肝外递送系统。

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