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Construction of histidine-containing hydrocarbon stapled cell penetrating peptides for in vitro and in vivo delivery of siRNAs

机译:含组氨酸的烃钉细胞穿透肽的构建用于siRNA的体外和体内递送

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摘要

A hydrocarbon stapled peptide based strategy was used to develop an optimized cell penetrating peptide for siRNA delivery. Various stapled peptides, having amphipathic Leu- and Lys-rich regions, were prepared and their cell penetrating potentials were evaluated. One peptide, stEK, was found to have high cell penetration and siRNA delivery abilities at low nanomolar concentrations. In order to improve its ability to promote gene silencing, stEK was modified by replacing several Lys residues with His moieties. The modified peptide, LKH-stEK, was found to facilitate endosomal escape and to display >90% knock-down with 50 nM of a siRNA targeting cyclophilin B in HeLa cells. The results of an in vivo animal wound healing model study demonstrate that LKH-stEK promotes delivery of an siRNA, which targets the connective tissue growth factor, and that this process leads to efficient gene silencing by the siRNA at a nanomolar level in mouse skin.
机译:使用基于碳氢化合物固定肽的策略来开发用于siRNA递送的优化的细胞穿透肽。制备了具有两亲性亮氨酸和赖氨酸富集区域的各种固定肽,并评估了它们的细胞穿透潜力。发现一种肽stEK在低纳摩尔浓度下具有高细胞渗透性和siRNA递送能力。为了提高其促进基因沉默的能力,stEK通过用His部分取代几个Lys残基进行了修饰。发现修饰的肽LKH-stEK有助于内体逃逸,并在HeLa细胞中用50 nM靶向亲环蛋白B的siRNA表现出> 90%的敲低。体内动物伤口愈合模型研究的结果表明,LKH-stEK促进靶向结缔组织生长因子的siRNA的传递,并且该过程可导致siRNA在小鼠皮肤中以纳摩尔水平有效沉默基因。

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