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Mannan-Modified PLGA Nanoparticles for Targeted Gene Delivery

机译:甘露聚糖修饰的PLGA纳米颗粒用于靶向基因的传递

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The studies of targeted gene delivery nanocarriers have gained increasing attention during the past decades. In this study, mannan modified DNA loaded bioadhesive PLGA nanoparticles (MAN-DNA-NPs) were investigated for targeted gene delivery to the Kupffer cells (KCs). Bioadhesive PLGA nanoparticles were prepared and subsequently bound with pEGFP. Following the coupling of the mannan-based PE-grafted ligands (MAN-PE) with the DNA-NPs, the MAN-DNA-NPs were delivered intravenously to rats. The transfection efficiency was determined from the isolated KCs and flow cytometry was applied for the quantitation of gene expression after 48 h post transfection. The size of the MAN-DNA-NPs was found to be around 190 nm and the Zeta potential was determined to be -15.46mV. The pEGFP binding capacity of MAN-DNA-NPs was (88.9 +- 5.8)percent and the in vitro release profiles of the MAN-DNA-NPs follow the Higuchi model. When compared with non-modified DNA-NPs and Lipofectamine 2000-DNA, MAN-DNA-NPs produced the highest gene expressions, especially in vivo. The in vivo data from flow cytometry analysis showed that MAN-DNA-NPs displayed a remarkably higher transfection efficiency (39percent) than non-modified DNA-NPs (25percent) and Lipofectamine 2000-DNA (23percent) in KCs. The results illustrate that MAN-DNA-NPs have the ability to target liver KCs and could function as promising active targeting drug delivery vectors.
机译:在过去的几十年中,靶向基因递送纳米载体的研究越来越受到关注。在这项研究中,研究了甘露聚糖修饰的DNA负载生物粘附PLGA纳米颗粒(MAN-DNA-NPs)的靶向基因传递到库普弗细胞(KCs)的研究。制备了生物粘附性PLGA纳米颗粒,随后与pEGFP结合。在将甘露聚糖基PE嫁接的配体(MAN-PE)与DNA-NP偶联后,将MAN-DNA-NP静脉内递送给大鼠。从分离的KC确定转染效率,并且在转染后48小时后将流式细胞仪用于基因表达的定量。发现MAN-DNA-NP的大小在190nm左右,并且Zeta电位被确定为-15.46mV。 MAN-DNA-NP的pEGFP结合能力为(88.9±5.8)%,并且MAN-DNA-NP的体外释放曲线遵循Higuchi模型。与未修饰的DNA-NP和Lipofectamine 2000-DNA相比,MAN-DNA-NP产生的基因表达最高,尤其是在体内。流式细胞仪分析的体内数据表明,在KC中,MAN-DNA-NPs的转染效率(39%)显着高于未修饰的DNA-NPs(25%)和Lipofectamine 2000-DNA(23%)。结果表明,MAN-DNA-NP具有靶向肝KCs的能力,并且可以用作有希望的主动靶向药物递送载体。

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