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Design of novel polysaccharidic nanostructures for gene delivery

机译:用于基因传递的新型多糖纳米结构的设计

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摘要

The goal of the present work was to develop a new synthetic nanosystem for gene delivery. For this purpose, we chose two polysaccharides, hyaluronic acid (HA) and chitosan (CS), as the main components of the nanocarrier. Nanoparticles with different hyaluronate: chitosan (HA: CS) mass ratios (0.5: 1 and 1: 1) and different polymer molecular weights (hyaluronate 170 (HA) or < 10 kDa (HAO) and chitosan 125 (CS) or 10-12 (CSO) kDa) could be obtained using an ionic crosslinking method. These nanoparticles were loaded with pDNA and characterized for their size, zeta potential and pDNA association efficiency. Moreover, their toxicity and ability to transfect the model plasmid pEGFP-C1 were evaluated in the cell line HEK 293, as well as their intracellular fate. The results showed that HA: CS nanoparticles have a small size in the range of 110-230 nm, a positive zeta potential of + 10 to + 32 mV and a very high pDNA association efficiency of 87-99% (w/w). On the other hand, nanoparticles exhibited low cell toxicity and transfection levels up to 25% GFP expressing HEK 293 cells, lasting for the whole observation period of 10 days. We also provide basic information about the role of both polymers, HA and CS, and the effect of their molecular weight on the effectiveness of the resulting DNA nanocarrier, being the highest transfection levels observed with HAO: CSO 1:1 nanoparticles. In conclusion, HA: CS nanoparticles are promising carriers for gene delivery.
机译:本工作的目的是开发一种新的用于基因传递的合成纳米系统。为此,我们选择了两种多糖,透明质酸(HA)和壳聚糖(CS),作为纳米载体的主要成分。具有不同的透明质酸:壳聚糖(HA:CS)质量比(0.5:1和1:1)和不同的聚合物分子量(透明质酸170(HA)或<10 kDa(HAO)和壳聚糖125(CS)或10-12)的纳米颗粒(CSO)kDa)可以使用离子交联方法获得。这些纳米颗粒装有pDNA,并对其大小,ζ电位和pDNA结合效率进行了表征。此外,在细胞系HEK 293中评估了它们的毒性和转染模型质粒pEGFP-C1的能力,以及它们的细胞内命运。结果表明,HA:CS纳米粒子在110-230 nm范围内具有较小尺寸,正zeta电位为+ 10至+ 32 mV,pDNA缔合效率非常高,为87-99%(w / w)。另一方面,纳米颗粒表现出低的细胞毒性,转染水平最高可达25%的GFP表达HEK 293细胞,持续整个10天的观察期。我们还提供有关聚合物HA和CS的作用及其分子量对所得DNA纳米载体有效性的影响的基本信息,这是使用HAO:CSO 1:1纳米颗粒观察到的最高转染水平。总之,HA:CS纳米粒子是有希望的基因传递载体。

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