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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Tumor-homing glycol chitosan/polyethylenimine nanoparticles for the systemic delivery of siRNA in tumor-bearing mice
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Tumor-homing glycol chitosan/polyethylenimine nanoparticles for the systemic delivery of siRNA in tumor-bearing mice

机译:肿瘤归巢乙二醇壳聚糖/聚乙烯亚胺纳米颗粒用于在荷瘤小鼠中全身递送siRNA

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摘要

Here, we designed a new nano-sized siRNA carrier system composed of biocompatible/biodegradable glycol chitosan polymer (GC) and strongly positively charged polyethylenimine (PEI) polymers. In order to make a stable and tumor-homing nano-sized carrier, each polymer was modified with hydrophobic 5β-cholanic acid, and they were simply mixed to form self-assembled GC-PEI nanoparticles (GC-PEI NPs), due to the strong hydrophobic interactions of 5β-cholanic acids in the polymers. The freshly prepared GC-PEI NPs showed a stable nanoparticle structure (350. nm) and they presented a strongly positive-charged surface (ζ potential = 23.8) that is enough to complex tightly with negatively charged RFP-siRNAs, designed for inhibiting red fluorescent protein (RFP) expression. The siRNA encapsulated nanoparticles (siRNA-GC-PEI NPs) formed more compact and stable nanoparticle structures (250. nm) at 1: 5 weight ratio of siRNA to GC-PEI nanoparticles. In vitro RFP expressing B16F10 tumor cell (RFP/B16F10) culture system, the siRNA-GC-PEI NPs presented a rapid time-dependent cellular uptake profile within 1. h. Moreover, the internalized siRNA-GC-PEI NPs lead to specific mRNA breaks down. Furthermore, our new formulation of siRNA-GC-PEI NPs presented a significant inhibition of RFP gene expression of RFP/B16F10-bearing mice, due to their higher tumor-targeting ability. These results revealed the promising potential of GC-PEI NPs as a stable and effective nano-sized siRNA delivery system for cancer treatment.
机译:在这里,我们设计了一种新的纳米级siRNA载体系统,该系统由生物相容性/可生物降解的乙二醇壳聚糖聚合物(GC)和带正电的聚乙烯亚胺(PEI)聚合物组成。为了制得稳定且具有肿瘤归巢性的纳米级载体,每种聚合物都用疏水性5β-胆酸改性,然后将它们简单混合以形成自组装的GC-PEI纳米颗粒(GC-PEI NP)。 5β-胆酸在聚合物中的强疏水相互作用。新鲜制备的GC-PEI NPs表现出稳定的纳米颗粒结构(350. nm),并呈现出强正电荷的表面(ζ电位= 23.8),足以与带负电荷的RFP-siRNA紧密配合,旨在抑制红色荧光蛋白(RFP)表达。 siRNA包裹的纳米颗粒(siRNA-GC-PEI NPs)在siRNA与GC-PEI纳米颗粒的重量比为1:5时形成了更紧凑和稳定的纳米颗粒结构(250. nm)。体外表达RFP的B16F10肿瘤细胞(RFP / B16F10)培养系统,siRNA-GC-PEI NP在1 h内呈现出快速的时间依赖性细胞摄取特征。此外,内在化的siRNA-GC-PEI NP导致特定的mRNA分解。此外,我们的新siRNA-GC-PEI NP制剂由于具有更高的肿瘤靶向能力,因此对带有RFP / B16F10的小鼠的RFP基因表达具有明显的抑制作用。这些结果表明,GC-PEI NPs作为稳定且有效的纳米级siRNA递送系统,有望用于癌症治疗。

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