首页> 外文期刊>Journal of drug targeting >PEG-detachable cationic polyaspartamide derivatives bearing stearoyl moieties for systemic siRNA delivery toward subcutaneous Bxpc3 pancreatic tumor
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PEG-detachable cationic polyaspartamide derivatives bearing stearoyl moieties for systemic siRNA delivery toward subcutaneous Bxpc3 pancreatic tumor

机译:带有硬脂酰基的PEG可分离阳离子聚天冬酰胺衍生物,可用于向皮下Bxpc3胰腺肿瘤的全身siRNA递送

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For systemic siRNA delivery into tumor tissues, a safe and efficient vehicle is strongly required. Therefore, we designed a block copolymer of detachable poly(ethylene glycol) (PEG) polycation bearing low pKa amines and hydrophobic moieties in the side chain to develop a smart siRNA complex possessing biocompatibility, high complex stability, and endosomal escaping functionality. A disulfide linkage (-SS-) was inserted as a linker between PEG and a cationic polyaspartamide derivative, poly{N-[N-(2-aminoethyl)-2- aminoethyl]aspartamide} (PAsp(DET)), with a flanking stearoyl moiety, where PAsp(DET) segment provides the excellent ability of endosome destabilization by direct interaction with the membrane. The resulting polymer, stearoyl PEG-SS-PAsp(DET), was confirmed to form the siRNA complex with an environment-responsive PEG palisade, which was detached from the complex surface under reductive conditions mimicking tumor tissues and cytoplasm because of the disulfide cleavage. The smart siRNA complex allowed significant gene silencing against cultured pancreatic cancer cells without considerable cytotoxicity and erythrocyte disruption, whereas such significant gene silencing was not observed in a control siRNA complex without the disulfide linkage. This enhanced gene silencing activity might be because of the enhanced cellular uptake and subsequent translocation of siRNA into cytoplasm facilitated by PEG detachment around and/or in the cancer cells. Further, intravital real-time confocal laser scanning microscopic observation revealed the effect of hydrophobic stearoyl modification on the stabilization of the siRNA complex for longevity in the blood. Significant in vivo gene silencing of the smart siRNA complex was achieved by systemic administration of vascular endothelial growth factor siRNA in a mouse model bearing a subcutaneous pancreatic tumor, leading to 40% regression in tumor growth. These results demonstrate the strong potential of stearoyl PEG-SS-PAsp(DET) as a vehicle for systemic delivery of siRNA in cancer therapy.
机译:为了将系统性siRNA递送至肿瘤组织,强烈需要安全有效的载体。因此,我们设计了一种可拆卸的聚(乙二醇)(PEG)聚阳离子的嵌段共聚物,该共聚物在侧链上带有低pKa胺和疏水部分,以开发一种具有生物相容性,高复合物稳定性和内体逃逸功能的智能siRNA复合物。将二硫键(-SS-)作为连接剂插入PEG与阳离子聚天冬酰胺衍生物,聚{N- [N-(2--氨基乙基)-2-氨乙基]天冬酰胺}(PAsp(DET))之间硬脂酰基部分,其中PAsp(DET)片段通过与膜的直接相互作用提供了极好的内体去稳定能力。确认得到的聚合物硬脂酰PEG-SS-PAsp(DET)与环境敏感的PEG栅栏形成siRNA复合物,由于二硫键的裂解,在模拟肿瘤组织和细胞质的还原条件下,其从复合物表面脱离。聪明的siRNA复合物允许对培养的胰腺癌细胞进行显着的基因沉默,而没有明显的细胞毒性和红细胞破坏,而在没有二硫键的对照siRNA复合物中未观察到这种显着的基因沉默。这种增强的基因沉默活性可能是由于细胞周围和/或癌细胞中的PEG分离促进了细胞摄取的增强以及随后siRNA易位到细胞质中。此外,活体内实时共聚焦激光扫描显微镜观察揭示了疏水硬脂酰修饰对siRNA复合物稳定的作用,以延长血液寿命。通过在患有皮下胰腺肿瘤的小鼠模型中全身施用血管内皮生长因子siRNA,可实现智能siRNA复合物的显着体内基因沉默,从而导致肿瘤生长降低40%。这些结果证明,硬脂酰PEG-SS-PAsp(DET)作为在癌症治疗中全身递送siRNA的载体具有强大的潜力。

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