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Molecular parameters of siRNA-cell penetrating peptide nanocomplexes for efficient cellular delivery

机译:用于有效细胞递送的siRNA细胞穿透肽纳米复合物的分子参数

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Cell-penetrating peptides (CPPs) are versatile tools for the intracellular delivery of various biomolecules, including siRNA. Recently, CPPs were introduced that showed greatly enhanced delivery efficiency. However, the molecular basis of this increased activity is poorly understood. Here, we performed a detailed analysis of the molecular and physicochemical properties of seven different siRNA-CPP nanoparticles. In addition, we determined which complexes are internalized most efficiently into the leukemia cell-line SKNO-1, and subsequently inhibited the expression of a luciferase reporter gene. We demonstrated effective complexation of siRNA for all tested CPPs, and optimal encapsulation of the siRNA was achieved at very similar molar ratios independent of peptide charge. However, CPPs with an extreme high or low overall charge proved to be exceptions, suggesting an optimal range of charge for CPP-siRNA nanoparticle formation based on opposite charge. The most active CPP (PepFect6) displayed high serum resistance but also high sensitivity to decomplexation by polyanionic macromolecules, indicating the necessity for partial decomplexation for efficient uptake. Surprisingly, CPP-siRNA complexes acquired a negative ζ-potential in the presence of serum. These novel insights shed light on the observation that cell association is necessary but not sufficient for activity and motivate new research into the nature of the nanoparticle-cell interaction. Overall, our results provide a comprehensive molecular basis for the further development of peptide-based oligonucleotide transfection agents.
机译:细胞穿透肽(CPPs)是用于各种生物分子(包括siRNA)的细胞内递送的多功能工具。最近,引入了CPP,显示了大大提高的交付效率。但是,人们对这种增加的活性的分子基础知之甚少。在这里,我们对七个不同的siRNA-CPP纳米颗粒的分子和理化性质进行了详细分析。此外,我们确定了哪些复合物最有效地内化到白血病细胞系SKNO-1中,并随后抑制了萤光素酶报道基因的表达。我们证明了所有测试的CPP均有效结合了siRNA,并且在与肽电荷无关的非常相似的摩尔比下实现了siRNA的最佳包封。然而,具有极高或极低总电荷的CPP被证明是例外,这表明基于相反电荷的CPP-siRNA纳米颗粒形成的最佳电荷范围。活性最高的CPP(PepFect6)表现出较高的血清抵抗力,但对聚阴离子大分子分解产生的敏感性也很高,表明必须进行部分分解才能有效吸收。出乎意料的是,在血清存在下,CPP-siRNA复合物获得了负的ζ电位。这些新颖的见解使人们认识到细胞缔合是必需的,但不足以促进活性,并激发了对纳米粒子与细胞相互作用本质的新研究。总体而言,我们的结果为进一步开发基于肽的寡核苷酸转染试剂提供了全面的分子基础。

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