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In Vivo Bio-distribution and Efficient Tumor Targeting of Gelatin/Silica Nanoparticles for Gene Delivery

机译:明胶/二氧化硅纳米粒子的体内生物分布和高效肿瘤靶向基因传递。

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摘要

The non-viral gene delivery system is an attractive alternative to cancer therapy. The clinical success of non-viral gene delivery is hampered by transfection efficiency and tumor targeting, which can be individually overcome by addition of functional modules such as cell penetration or targeting. Here, we first engineered the multifunctional gelatin/silica (GS) nanovectors with separately controllable modules, including tumor-targeting aptamer AGRO100, membrane-destabilizing peptide HA2, and polyethylene glycol (PEG), and then studied their bio-distribution and in vivo transfection efficiencies by contrast resonance imaging (CRI). The results suggest that the sizes and zeta potentials of multifunctional gelatin/silica nanovectors were 203–217 nm and 2–8 mV, respectively. Functional GS-PEG nanoparticles mainly accumulated in the liver and tumor, with the lowest uptake by the heart and brain. Moreover, the synergistic effects of tumor-targeting aptamer AGRO100 and fusogenic peptide HA2 promoted the efficient cellular internalization in the tumor site. More importantly, the combined use of AGRO100 and PEG enhanced tumor gene expression specificity and effectively reduced toxicity in reticuloendothelial system (RES) organs after intravenous injection. Additionally, low accumulation of GS-PEG was observed in the heart tissues with high gene expression levels, which could provide opportunities for non-invasive gene therapy.
机译:非病毒基因递送系统是癌症治疗的一种有吸引力的替代方法。转染效率和肿瘤靶向性阻碍了非病毒基因递送的临床成功,这可以通过添加功能模块(例如细胞穿透或靶向性)单独克服。在这里,我们首先设计了具有单独可控模块的多功能明胶/二氧化硅(GS)纳米载体,包括靶向肿瘤的适体AGRO100,膜稳定肽HA2和聚乙二醇(PEG),然后研究了它们的生物分布和体内转染对比共振成像(CRI)的效率。结果表明,多功能明胶/二氧化硅纳米载体的大小和ζ电势分别为203–217nm和2–8 mV。功能性GS-PEG纳米颗粒主要聚集在肝脏和肿瘤中,而对心脏和大脑的吸收最少。而且,靶向肿瘤的适体AGRO100和融合肽HA2的协同作用促进了肿瘤部位中有效的细胞内在化。更重要的是,AGRO100和PEG的组合使用可增强肿瘤基因表达的特异性,并有效降低静脉注射后对网状内皮系统(RES)器官的毒性。此外,在具有高基因表达水平的心脏组织中观察到了GS-PEG的低积累,这可能为非侵入性基因治疗提供了机会。

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