Yin Hang, Yuan Xiaoling, Luo Lihua, Lu Yichao, Qin Bing, Zhang Junlei, Shi Yingying, Zhu Chunqi, Yang Jie, Li Xiang, Jiang Mengshi, Luo Zhenyu, Shan Xinyu, Chen Dawei, You Jian
College of Pharmaceutical Sciences Zhejiang University Hangzhou 310058 P. R. China.
School of Pharmacy Shenyang Pharmaceutical University Shenyang 110016 P. R. China.
Adv Sci (Weinh). 2020 Jun 13;7(14):1903381. doi: 10.1002/advs.201903381. eCollection 2020 Jul.
The development of gene delivery has attracted increasing attention, especially when the introduction and application of the CRISPR/Cas9 gene editing system appears promising for gene therapy. However, ensuring biosafety and high gene editing efficiency at the same time poses a great challenge for its in vivo applications. Herein, a pardaxin peptide (PAR)-modified cationic liposome (PAR-Lipo) is developed. The results are indicative that significantly enhanced gene editing efficiency can be obtained through the mediation of PAR-Lipos compared to non-Lipos (non-PAR-modified liposomes) and Lipofectamine 2000, owing to its protection toward carried nucleotide by the prevention of lysosomal capture, prolongation of retention time in cells through the accumulation in the endoplasmic reticulum (ER), and more importantly, facilitation of the nuclear access via an ER-nucleus route. Accumulation of PAR-Lipos in the ER may improve the binding of Cas9 and sgRNA, thus further contributing to the eventually enhanced gene editing efficiency. Given their high biosafety, PAR-Lipos are used to mediate the knockout of the oncogene CDC6 in vivo, which results in significant tumor growth inhibition. This work may provide a useful reference for enhancing the delivery of gene editing systems, thus improving the potential for their future clinical applications.
基因递送的发展已引起越来越多的关注,尤其是当CRISPR/Cas9基因编辑系统的引入和应用在基因治疗方面显示出前景时。然而,在体内应用中同时确保生物安全性和高基因编辑效率对其而言是一个巨大的挑战。在此,开发了一种豹鳎肽(PAR)修饰的阳离子脂质体(PAR-Lipo)。结果表明,与非脂质体(未修饰PAR的脂质体)和Lipofectamine 2000相比,通过PAR-Lipo的介导可显著提高基因编辑效率,这归因于其对携带的核苷酸的保护作用,即防止溶酶体捕获,通过在内质网(ER)中的积累延长在细胞内的保留时间,更重要的是,通过内质网-细胞核途径促进细胞核进入。PAR-Lipo在内质网中的积累可能会改善Cas9与sgRNA的结合,从而进一步提高最终的基因编辑效率。鉴于其高生物安全性,PAR-Lipo被用于在体内介导癌基因CDC6的敲除,这导致显著的肿瘤生长抑制。这项工作可能为增强基因编辑系统的递送提供有用的参考,从而提高其未来临床应用的潜力。