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首页> 外文期刊>Journal of nanomaterials >Characterization of Plasmid DNA Location within Chitosan/PLGA/pDNA Nanoparticle Complexes Designed for Gene Delivery
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Characterization of Plasmid DNA Location within Chitosan/PLGA/pDNA Nanoparticle Complexes Designed for Gene Delivery

机译:壳聚糖/ PLGA / pDNA纳米颗粒复合物中质粒DNA定位的设计,用于基因传递。

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摘要

Poly(D,L-lactide-co-glycolide-) (PLGA-)chitosan nanoparticles are becoming an increasingly common choice for the delivery of nucleic acids to cells for various genetic manipulation techniques. These particles are biocompatible, with tunable size and surface properties, possessing an overall positive charge that promotes complex formation with negatively charged nucleic acids. This study examines properties of the PLGA-chitosan nanoparticle/plasmid DNA complex after formation. Specifically, the study aims to determine the optimal ratio of plasmid DNA:nanoparticles for nucleic acid delivery purposes and to elucidate the location of the pDNA within these complexes. Such characterization will be necessary for the adoption of these formulations in a clinical setting. The ability of PLGA-chitosan nanoparticles to form complexes with pDNA was evaluated by using the fluorescent intercalating due OliGreen to label free plasmid DNA. By monitoring the fluorescence at different plasmid: nanoparticle ratios,the ideal plasmid:nanoparticle ration for complete complexation of plasmid was determined to be 1:50. Surface-Enhanced Raman Spectroscopy and gel digest studies suggested that even at these optimal complexation ratios, a portion of the plasmid DNA was located on the outer complex surface. This knowledge will facilitate future investigations into the functionality of the system in vitro and in vivo.
机译:聚(D,L-丙交酯-乙交酯-乙交酯)(PLGA-)壳聚糖纳米颗粒正成为将核酸传递至细胞的多种遗传操作技术的日益普遍的选择。这些颗粒是生物相容的,具有可调的大小和表面特性,具有整体正电荷,可促进与带负电荷的核酸形成复合物。这项研究检查了PLGA-壳聚糖纳米颗粒/质粒DNA复合物形成后的性质。具体而言,该研究旨在确定用于核酸递送目的的质粒DNA:纳米颗粒的最佳比例,并阐明这些复合物中pDNA的位置。这种表征对于在临床环境中采用这些制剂将是必要的。通过使用OliGreen荧光嵌入标记游离质粒DNA,评估了PLGA-壳聚糖纳米颗粒与pDNA形成复合物的能力。通过监测不同质粒:纳米颗粒比率的荧光,确定质粒完全复合的理想质粒:纳米颗粒比率为1:50。表面增强拉曼光谱和凝胶消化研究表明,即使在这些最佳络合比下,一部分质粒DNA仍位于外部复合物表面。该知识将有助于将来在体外和体内对系统功能进行调查。

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