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Delivery of small interfering RNA by peptide-targeted mesoporous silica nanoparticle-supported lipid bilayers

机译:靶向肽的介孔二氧化硅纳米颗粒支持的脂质双层递送小分子干扰RNA

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The therapeutic potential of small interfering RNAs (siRNAs) is severely limited by the availability of delivery platforms that protect siRNA from degradation, deliver it to the target cell with high specificity and efficiency, and promote its endosomal escape and cytosolic dispersion. Here we report that mesoporous silica nanoparticle-supported lipid bilayers (or " protocells") exhibit multiple properties that overcome many of the limitations of existing delivery platforms. Protocells have a 10- to 100-fold greater capacity for siRNA than corresponding lipid nanoparticles and are markedly more stable when incubated under physiological conditions. Protocells loaded with a cocktail of siRNAs bind to cells in a manner dependent on the presence of an appropriate targeting peptide and, through an endocytic pathway followed by endosomal disruption, promote delivery of the silencing nucleotides to the cytoplasm. The expression of each of the genes targeted by the siRNAs was shown to be repressed at the protein level, resulting in a potent induction of growth arrest and apoptosis. Incubation of control cells that lack expression of the antigen recognized by the targeting peptide with siRNA-loaded protocells induced neither repression of protein expression nor apoptosis, indicating the precise specificity of cytotoxic activity. In terms of loading capacity, targeting capabilities, and potency of action, protocells provide unique attributes as a delivery platform for therapeutic oligonucleotides.
机译:传递平台的可用性严重限制了小干扰RNA(siRNA)的治疗潜力,该平台可保护siRNA免受降解,以高特异性和高效率将其传递至靶细胞,并促进其内体逃逸和胞质分散。在这里我们报道介孔二氧化硅纳米粒子支持脂质双层(或“原始细胞”)表现出克服现有交付平台的许多限制的多种属性。原始细胞的siRNA容量比相应的脂质纳米颗粒大10至100倍,并且在生理条件下孵育时明显更稳定。装载有siRNA混合物的原始细胞以依赖于适当靶向肽存在的方式与细胞结合,并通过内吞途径继之以内体破坏,促进沉默核苷酸向细胞质的递送。 siRNA靶向的每个基因的表达均显示在蛋白质水平受到抑制,从而有效诱导了生长停滞和凋亡。载有siRNA的原始细胞与缺乏靶向肽识别的抗原表达的对照细胞孵育后,既不会抑制蛋白质表达也不会诱导凋亡,这表明细胞毒活性的确切特异性。就负载能力,靶向能力和作用力而言,原始细胞提供独特的属性作为治疗性寡核苷酸的递送平台。

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