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基于肽的载体 PepFect6 的设计,用于在细胞培养和体内系统中高效递送 siRNA。

Design of a peptide-based vector, PepFect6, for efficient delivery of siRNA in cell culture and systemically in vivo.

机构信息

Department of Neurochemistry, Stockholm University, 106 92 Stockholm, Sweden.

出版信息

Nucleic Acids Res. 2011 May;39(9):3972-87. doi: 10.1093/nar/gkq1299. Epub 2011 Jan 17.

Abstract

While small interfering RNAs (siRNAs) have been rapidly appreciated to silence genes, efficient and non-toxic vectors for primary cells and for systemic in vivo delivery are lacking. Several siRNA-delivery vehicles, including cell-penetrating peptides (CPPs), have been developed but their utility is often restricted by entrapment following endocytosis. Hence, developing CPPs that promote endosomal escape is a prerequisite for successful siRNA implementation. We here present a novel CPP, PepFect 6 (PF6), comprising the previously reported stearyl-TP10 peptide, having pH titratable trifluoromethylquinoline moieties covalently incorporated to facilitate endosomal release. Stable PF6/siRNA nanoparticles enter entire cell populations and rapidly promote endosomal escape, resulting in robust RNAi responses in various cell types (including primary cells), with minimal associated transcriptomic or proteomic changes. Furthermore, PF6-mediated delivery is independent of cell confluence and, in most cases, not significantly hampered by serum proteins. Finally, these nanoparticles promote strong RNAi responses in different organs following systemic delivery in mice without any associated toxicity. Strikingly, similar knockdown in liver is achieved by PF6/siRNA nanoparticles and siRNA injected by hydrodynamic infusion, a golden standard technique for liver transfection. These results imply that the peptide, in addition to having utility for RNAi screens in vitro, displays therapeutic potential.

摘要

虽然小干扰 RNA(siRNA)已被迅速用于基因沉默,但缺乏用于原代细胞和全身体内递送的有效且无毒的载体。已经开发了几种 siRNA 递送载体,包括穿透肽(CPP),但其用途通常受到内吞作用后捕获的限制。因此,开发促进内涵体逃逸的 CPP 是成功实施 siRNA 的前提。我们在这里介绍了一种新型 CPP,PepFect 6(PF6),由先前报道的硬脂酰-TP10 肽组成,具有 pH 可滴定的三氟甲基喹啉部分,通过共价结合来促进内涵体释放。稳定的 PF6/siRNA 纳米颗粒进入整个细胞群并迅速促进内涵体逃逸,导致各种细胞类型(包括原代细胞)产生强大的 RNAi 反应,同时相关的转录组或蛋白质组变化最小。此外,PF6 介导的递送不依赖于细胞汇合,并且在大多数情况下,不受血清蛋白的显著阻碍。最后,这些纳米颗粒在小鼠体内全身递送后可在不同器官中引起强烈的 RNAi 反应,而没有任何相关毒性。引人注目的是,PF6/siRNA 纳米颗粒和通过水力灌输注射的 siRNA 在肝脏中实现了类似的敲低,水力灌输是肝转染的金标准技术。这些结果表明,该肽除了在体外 RNAi 筛选中具有用途外,还具有治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78d7/3089457/ec7459110527/gkq1299f1.jpg

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