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In vitro cytotoxicity and transfection efficiency of pDNA encoded p53 gene-loaded chitosan-sodium deoxycholate nanoparticles

机译:pDNA编码的p53基因负载的壳聚糖脱氧胆酸钠纳米粒子的体外细胞毒性和转染效率

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摘要

>Purpose: The objective of this work was to formulate a delivery system of pDNA encoded p53 gene-loaded chitosan-sodium deoxycholate (CS-DS) nanoparticles, and to evaluate their influence on in vitro cytotoxicity and transfection efficiency of p53 gene.>Methods: The prepared pDNA-loaded CS-DS nanoparticles were evaluated for morphology, particle size, zeta potential, entrapment efficiency %, in vitro release, in vitro cytotoxicity, and transfection efficiency.>Results: The mean particle size ranged from from 96.5 ± 11.31 to 405 ± 46.39 nm. All nanoparticles had good positive zeta potential values. Entrapment efficiency % ranged from 38.25 ± 3.25 to 94.89 ± 5.67. The agarose gel electrophoresis confirmed the strong binding between plasmid and CS. The in vitro pDNA release from nanoparticles exhibited an initial burst effect followed by a sustained drug release over a period of 6 days. In vitro cytotoxicity against human Caco-2 cells showed low cell cytotoxicity of plain CS-DS nanoparticles, while pDNA-loaded CS-DS nanoparticles showed a cytotoxic effect with increasing nanoparticles' concentration. Gene transfection, analyzed by PCR and ELISA, showed a direct correlation between gene expression and concentration of pDNA. The highest expression of the gene was achieved with pDNA concentration of 9 µg/mL with 5.7 times increase compared to naked pDNA of the same concentration.>Conclusion: The obtained results were very encouraging and offer an alternative approach to enhancing the transfection efficiency of genetic material-loaded chitosan-based delivery systems.
机译:>目的:该工作的目的是建立由pDNA编码的p53基因负载的壳聚糖脱氧胆酸钠(CS-DS)纳米粒子的递送系统,并评估其对体外细胞毒性和转染效率的影响。 >方法:对制备的pDNA负载的CS-DS纳米粒子的形态,粒径,ζ电位,包封率,体外释放,体外细胞毒性和转染效率进行评估。< strong>结果:平均粒径为96.5±11.31至405±46.39 nm。所有纳米颗粒均具有良好的正ζ电势值。包封效率%为38.25±3.25至94.89±5.67。琼脂糖凝胶电泳证实了质粒和CS之间的强结合。从纳米粒子的体外pDNA释放表现出最初的爆发效应,然后在6天的时间内持续释放药物。体外对人Caco-2细胞的细胞毒性显示普通CS-DS纳米颗粒的细胞毒性较低,而装载pDNA的CS-DS纳米颗粒则随着纳米颗粒浓度的增加而显示出细胞毒性作用。通过PCR和ELISA分析的基因转染显示,基因表达与pDNA浓度之间存在直接相关性。 pDNA浓度为9 µg / mL时,该基因的最高表达量比相同浓度的裸pDNA增长了5.7倍。>结论:获得的结果令人鼓舞,并提供了另一种方法增强了基于遗传物质的壳聚糖递送系统的转染效率。

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