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Ultrasound-enhanced gene delivery to alfalfa cells by hPAMAM dendrimer nanoparticles

机译:hPAMAM树状大分子纳米颗粒将超声增强基因传递至苜蓿细胞

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Cationic polyamidoamine (PAMAM) dendrimers are highly branched nanoparticles with unique molecular properties, which make them promising nanocarriers for gene delivery into cells. This research evaluated the ability of hyperbranched PAMAM (hPAMAM)-G2 with a diethylenetriamine core to interact with DNA, its protection from ultrasonic damage, and delivery to alfalfa cells. Additionally, the effects of ultrasound on the efficacy of hPAMAM-G2 for the delivery and expression of the gusA gene in the alfalfa cells were investigated. The electrophoresis retardation of plasmid DNA occurred at an N/P ratio (where N is the number of hPAMAM nitrogen atoms and P is the number of DNA phosphorus atoms) of 3 and above, and hPAMAM-G2 dendrimers completely immobilized the DNA at an N/P ratio of 4. The analysis of the DNA dissociated from the dendriplexes revealed a partial protection of the DNA from ultrasound damage at N/P ratios lower than 2, and with increasing N/P ratios, the DNA was better protected. Sonication of the alfalfa cells in the presence of ssDNA-FITC-hPAMAM increased the ssDNA delivery efficiency to 36%, which was significantly higher than that of ssDNA-FITC-hPAMAM without sonication. Additionally, the efficiency of transfection and the expression of the gusA gene were dependent on the N/P ratio and the highest efficiency (1.4%) was achieved at an N/P ratio of 10. The combination of 120 s of ultrasound and hPAMAM-DNA increased the gusA gene transfection and expression to 3.86%.
机译:阳离子聚酰胺型胺(PAMAM)树状聚合物是具有独特分子特性的高度分支的纳米颗粒,这使其成为有望将基因传递到细胞中的纳米载体。这项研究评估了带有二亚乙基三胺核心的超支化PAMAM(hPAMAM)-G2与DNA相互作用的能力,对超声波的保护作用以及对苜蓿细胞的递送能力。另外,研究了超声波对hPAMAM-G2在苜蓿细胞中传递和表达gusA基因的功效的影响。质粒DNA的电泳阻滞发生在N / P比(其中N是hPAMAM氮原子的数量,P是DNA磷原子的数量)的N / P比以上,并且hPAMAM-G2树状大分子将DNA完全固定在N / P比为4。从树突状复合体上解离的DNA的分析表明,在N / P比低于2的情况下,DNA受到了部分保护,免受超声损伤,并且随着N / P比的增加,DNA得到了更好的保护。在存在ssDNA-FITC-hPAMAM的情况下,苜蓿细胞的超声处理将ssDNA的递送效率提高到36%,这明显高于未超声处理的ssDNA-FITC-hPAMAM。此外,转染效率和gusA基因的表达取决于N / P比率,并且在N / P比率为10时达到最高效率(1.4%)。120 s超声和hPAMAM- DNA使gusA基因转染和表达增加到3.86%。

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