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首页> 外文期刊>Biochemical and Biophysical Research Communications >Delivery of kinesin spindle protein targeting siRNA in solid lipid nanoparticles to cellular models of tumor vasculature
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Delivery of kinesin spindle protein targeting siRNA in solid lipid nanoparticles to cellular models of tumor vasculature

机译:固体脂质纳米粒子中靶向siRNA的驱动蛋白纺锤体纺锤体蛋白传递到肿瘤脉管系统的细胞模型

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摘要

The ideal siRNA delivery system should selectively deliver the construct to the target cell, avoid enzymatic degradation, and evade uptake by phagocytes. In the present study, we evaluated the importance of polyethylene glycol (PEG) on lipid-based carrier systems for encapsulating, and delivering, siRNA to tumor vessels using cellular models. Lipid nanoparticles containing different percentage of PEG were evaluated based on their physical chemical properties, density compared to water, siRNA encapsulation, toxicity, targeting efficiency and gene silencing in vitro. siRNA can be efficiently loaded into lipid nanoparticles (LNPs) when DOTAP is included in the formulation mixture. However, the total amount encapsulated decreased with increase in PEG content. In the presence of siRNA, the final formulations contained a mixed population of particles based on density. The major population which contains the majority of siRNA exhibited a density of 4% glucose, and the minor fraction associated with a decreased amount of siRNA had a density less than PBS. The inclusion of 10 mol% PEG resulted in a greater amount of siRNA associated with the minor fraction. Finally, when kinesin spindle protein (KSP) siRNA was encapsulated in lipid nanoparticles containing a modest amount of PEG, the proliferation of endothelial cells was inhibited due to the efficient knock down of KSP mRNA. The presence of siRNA resulted in the formation of solid lipid nanoparticles when prepared using the thin film and hydration method. LNPs with a relatively modest amount of PEG can sufficiently encapsulate siRNA, improve cellular uptake and the efficiency of gene silencing.
机译:理想的siRNA递送系统应将构建体选择性地递送至靶细胞,避免酶降解,并避免吞噬细胞摄取。在本研究中,我们评估了聚乙二醇(PEG)在基于脂质的载体系统上使用细胞模型将siRNA封装和递送至肿瘤血管的重要性。基于其物理化学性质,与水相比的密度,siRNA包封,毒性,靶向效率和体外基因沉默,评估了包含不同百分比PEG的脂质纳米颗粒。当DOTAP包含在制剂混合物中时,siRNA可以有效地装载到脂质纳米颗粒(LNP)中。然而,封装的总量随PEG含量的增加而降低。在存在siRNA的情况下,最终制剂包含基于密度的混合颗粒群。包含大部分siRNA的主要群体的密度为4%葡萄糖,而与siRNA量减少相关的次要部分的密度低于PBS。包含10 mol%的PEG导致与次要部分相关的siRNA数量增加。最后,当将驱动蛋白纺锤体蛋白(KSP)siRNA封装在含有适量PEG的脂质纳米颗粒中时,由于KSP mRNA的有效敲低,内皮细胞的增殖受到抑制。当使用薄膜和水合方法制备时,siRNA的存在导致固体脂质纳米颗粒的形成。具有相对适量的PEG的LNP可以充分包裹siRNA,提高细胞摄取和基因沉默的效率。

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