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A New Potent Secondary Amphipathic Cell–penetrating Peptide for siRNA Delivery Into Mammalian Cells

机译:siRNA传递到哺乳动物细胞中的新的强大的二级两亲性细胞穿透肽。

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摘要

RNA interference constitutes a powerful tool for biological studies, but has also become one of the most challenging therapeutic strategies. However, small interfering RNA (siRNA)-based strategies suffer from their poor delivery and biodistribution. Cell-penetrating peptides (CPPs) have been shown to improve the intracellular delivery of various biologically active molecules into living cells and have more recently been applied to siRNA delivery. To improve cellular uptake of siRNA into challenging cell lines, we have designed a secondary amphipathic peptide (CADY) of 20 residues combining aromatic tryptophan and cationic arginine residues. CADY adopts a helical conformation within cell membranes, thereby exposing charged residues on one side, and Trp groups that favor cellular uptake on the other. We show that CADY forms stable complexes with siRNA, thereby increasing their stability and improving their delivery into a wide variety of cell lines, including suspension and primary cell lines. CADY-mediated delivery of subnanomolar concentrations of siRNA leads to significant knockdown of the target gene at both the mRNA and protein levels. Moreover, we demonstrate that CADY is not toxic and enters cells through a mechanism which is independent of the major endosomal pathway. Given its biological properties, we propose that CADY-based technology will have a significant effect on the development of fundamental and therapeutic siRNA-based applications.
机译:RNA干扰构成了生物学研究的强大工具,但也已成为最具挑战性的治疗策略之一。但是,基于小干扰RNA(siRNA)的策略因其传递和生物分布较差而受苦。细胞穿透肽(CPP)已显示可改善各种生物活性分子向活细胞内的细胞内递送,最近已应用于siRNA递送。为了提高对挑战性细胞系的siRNA的细胞摄取,我们设计了包含芳香族色氨酸和阳离子精氨酸残基的20个残基的二级两亲肽(CADY)。 CADY在细胞膜内采用螺旋构象,从而使一侧的带电荷残基暴露,而另一侧的Trp基团有利于细胞摄取。我们表明,CADY与siRNA形成稳定的复合物,从而增加了它们的稳定性并改善了它们向多种细胞系(包括悬浮细胞和原代细胞系)的传递。 CADY介导的亚纳摩尔浓度的siRNA传递导致靶基因在mRNA和蛋白质水平上的显着敲低。此外,我们证明CADY无毒,并通过独立于主要内体途径的机制进入细胞。鉴于其生物学特性,我们建议基于CADY的技术将对基于基础和治疗性siRNA的应用的开发产生重大影响。

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