Institute of Technology, University of Tartu, Tartu, Estonia.
Biomater Sci. 2019 Sep 24;7(10):4363-4374. doi: 10.1039/c9bm00688e.
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.
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。