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通过优化 CPP 中的脂肪酸长度和组氨酸含量来增强 siRNA 的转染

Enhancement of siRNA transfection by the optimization of fatty acid length and histidine content in the CPP.

机构信息

Institute of Technology, University of Tartu, Tartu, Estonia.

出版信息

Biomater Sci. 2019 Sep 24;7(10):4363-4374. doi: 10.1039/c9bm00688e.

DOI:10.1039/c9bm00688e
PMID:31411219
Abstract

Extracellular synthetic nucleic acids, such as siRNAs, are unable to reach their intended targets efficiently. Therefore, delivery methods such as cell-penetrating peptides (CPP), which increase their transport, could enhance the potency of siRNA as therapeutic agents. The CPP NickFect55 (NF55) is an efficient peptide-based delivery vector, which has been previously used to deliver plasmid DNA into cells in vivo. To achieve higher intracellular delivery and bioactivity from the delivered cargo, we designed a series of histidine-containing peptides by optimizing pH-sensitivity, net charge, hydrophobicity, and charge distribution in the sequence of the CPP NF55. In the current work, we have applied a strategy where we have replaced amino acids in the C-terminus of the peptide in order to distribute hydrophobic and hydrophilic amino acids into distinct regions along the alpha-helical projection, including histidine amino acids into the sequence at the N-terminus, and optimizing the N-terminal fatty acid modification to suit the specific peptide sequence. We tested the CPPs based on the transfection efficacy, CPP/siRNA complex stability, and the properties of the CPPs, such as hemolytic activity, buffering capability and cell toxicity. As a result, we have introduced a new peptide with a completely redesigned N-terminus that displays adaptive response to its physical environment. This peptide - NickFect70 (NF70) - efficiently condenses siRNA, protects the cargo against degradation and effectively mediates target gene knockdown both in mammalian cell culture and in vivo, in a mouse model.

摘要

细胞外合成核酸,如 siRNA,不能有效地到达其靶标。因此,如穿透肽 (CPP) 等能增加其运输的方法,可增强 siRNA 作为治疗剂的效力。CPP NickFect55 (NF55) 是一种有效的基于肽的递药载体,以前曾被用于将质粒 DNA 递送到体内的细胞中。为了实现从递药载体中获得更高的细胞内递呈和生物活性,我们通过优化 CPP NF55 序列中的 pH 敏感性、净电荷、疏水性和电荷分布,设计了一系列含组氨酸的肽。在目前的工作中,我们应用了一种策略,即用氨基酸取代肽的 C 末端,从而将疏水性和亲水性氨基酸分布在α螺旋突出物的不同区域,包括将组氨酸氨基酸引入到 N 末端的序列中,并优化 N 末端脂肪酸修饰以适应特定的肽序列。我们基于转染效率、CPP/siRNA 复合物稳定性以及 CPP 的性质,如溶血活性、缓冲能力和细胞毒性,测试了 CPP。结果,我们引入了一种全新的肽,其 N 末端完全重新设计,能对其物理环境做出适应性反应。这种肽 - NickFect70 (NF70) - 能有效地将 siRNA 浓缩,保护货物免受降解,并有效地介导哺乳动物细胞培养和体内(在小鼠模型中)靶基因的敲低。

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