Sun Qian, Zhang Hongqian, Ding Feng, Gao Xue, Zhu Zongwei, Yang Chuanxu
Key Laboratory of Colloid and Interface Chemistry of the Ministry of Education, and School of Chemistry and Chemical Engineering, Shandong University, Jinan 25010, China.
Key Laboratory of Colloid and Interface Chemistry of the Ministry of Education, and School of Chemistry and Chemical Engineering, Shandong University, Jinan 25010, China.
Int J Pharm. 2024 Mar 5;652:123845. doi: 10.1016/j.ijpharm.2024.123845. Epub 2024 Jan 22.
CRISPR-Cas genome editing technology holds great promise for wide-ranging biomedical applications. However, the development of efficient delivery system for CRISPR-Cas components remains challenging. Herein, we synthesized a series of ionizable lipids by conjugation of alkyl-acrylate to different amine molecules and further assembled ionizable lipid nanoparticles (iLNPs) for co-delivery of Cas9 mRNA and sgRNA. Among all the iLNP candidates, 1A14-iLNP with lipids containing spermine as amine head, demonstrated the highest cellular uptake, endosomal escape and mRNA expression in vitro. Co-delivery of Cas9 mRNA and sgRNA targeting EGFP by 1A14-iLNP achieved the highest EGFP knockout efficiency up to 70% in HeLa-EGFP cells. In addition, 1A14-iLNP displayed passive liver-targeting delivery of Cas9 mRNA in vivo with good biocompatibility. Moreover, we developed a simple method of lyophilization-mediated reverse transfection of CRISPR-Cas9 components for efficient genome editing. Therefore, the developed 1A14-iLNP and the lyophilization formulation, represent a potent solution for CRISPR-Cas9 delivery, which might broaden the future of biomedical applications of both mRNA and CRISPR-based therapies.
CRISPR-Cas基因组编辑技术在广泛的生物医学应用中具有巨大潜力。然而,开发用于CRISPR-Cas组件的高效递送系统仍然具有挑战性。在此,我们通过将丙烯酸烷基酯与不同的胺分子共轭合成了一系列可电离脂质,并进一步组装了可电离脂质纳米颗粒(iLNPs)用于共递送Cas9 mRNA和sgRNA。在所有iLNP候选物中,以含有精胺作为胺头的脂质的1A14-iLNP在体外表现出最高的细胞摄取、内体逃逸和mRNA表达。通过1A14-iLNP共递送靶向EGFP的Cas9 mRNA和sgRNA在HeLa-EGFP细胞中实现了高达70%的最高EGFP敲除效率。此外,1A14-iLNP在体内表现出对Cas9 mRNA的被动肝靶向递送且具有良好的生物相容性。此外,我们开发了一种简单的冻干介导的CRISPR-Cas9组件反向转染方法用于高效基因组编辑。因此,所开发的1A14-iLNP和冻干制剂代表了一种用于CRISPR-Cas9递送的有效解决方案,这可能会拓宽基于mRNA和CRISPR的疗法在生物医学应用中的未来前景。