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Design, synthesis and evaluation of novel, branched trident small interfering RNA nanostructures for sequence-specific RNAi activity

机译:设计,合成和评估新颖的,分支的三叉戟小干扰RNA纳米结构的序列特异性RNAi活性。

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Small interfering RNAs (siRNAs) are potential candidates for gene regulation with efficient activity, but off-target effects and limited systemic delivery. Herein, we report the design and synthesis of the branched siRNA nanostructures with highly improved resistance against exonucleases. Also, these branched siRNAs showed suppression of off-target gene silencing through selection of the passenger strand as the branching unit. The physical characterization of branched siRNAs showed that they form a compact assembly with a hydrodynamic diameter of 6.9 nm against 2.8 nm of the duplex. We demonstrated that a branched siRNA synthesized with a trebling solid-support selectively exhibits RNAi activity and suppresses the off-target effect.
机译:小干扰RNA(siRNA)是具有高效活性,但脱靶效应和系统递送受限的潜在基因调控候选物。在这里,我们报告设计和合成的支链siRNA纳米结构具有高度改善的对核酸外切酶的抵抗力。而且,这些分支的siRNA通过选择过客链作为分支单位,显示出脱靶基因沉默的抑制。支链siRNA的物理特征表明它们形成了一个紧凑的组装体,其流体动力学直径为6.9 nm,而双链体为2.8 nm。我们证明了用三倍固相支持物合成的分支siRNA选择性显示RNAi活性并抑制脱靶效应。

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