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Enhanced Gene Delivery Mediated by Low Molecular Weight Chitosan/DNA Complexes: Effect of pH and Serum

机译:低分子量壳聚糖/ DNA复合物介导的增强基因传递:pH和血清的影响

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摘要

AbstractThis study was designed to systematically evaluate the influence of pH and serum on the transfection process of chitosan–DNA complexes, with the objective of maximizing their efficiency. The hydrodynamic diameter of the complexes, measured by dynamic light scattering (DLS), was found to increase with salt and pH from 243 nm in water to 1244 nm in PBS at pH 7.4 and aggregation in presence of 10% serum. The cellular uptake of complexes into HEK 293 cells assessed by flow cytometry and confocal fluorescent imaging was found to increase at lower pH and serum. Based on these data, new methodology were tested and high levels of transfection (>40%) were achieved when transfection was initiated at pH 6.5 with 10% serum for 8–24 h to maximize uptake and then the media was changed to pH 7.4 with 10% serum for an additional 24–40 h period. Cytotoxicity of chitosan/DNA complexes was also considerably lower than Lipofectamine™. Our study demonstrates that the evaluation of the influence of important parameters in the methodology of transfection enables the understanding of crucial physicochemical and biological mechanisms which allows for the design of methodologies maximising transgene expression.
机译:摘要本研究旨在系统评估pH和血清对壳聚糖-DNA复合物转染过程的影响,目的是最大程度地提高其效率。通过动态光散射(DLS)测量,发现复合物的流体动力学直径随盐和pH值的增加而增加,从pH 7.4的水中的243 nm增加到PBS中的1244 nm的pH,并在存在10%血清的情况下聚集。通过流式细胞仪和共聚焦荧光成像评估,复合物对HEK 293细胞的细胞摄取在较低的pH和血清下会增加。根据这些数据,测试了新的方法,当在pH 6.5和10%的血清中开始转染8–24小时以最大程度地吸收时,可实现高水平的转染(> 40%),然后将培养基更改为pH 7.4。 10%的血清可再使用24–40小时。壳聚糖/ DNA复合物的细胞毒性也大大低于Lipofectamine™。我们的研究表明,对转染方法中重要参数的影响进行评估,有助于理解关键的理化和生物学机制,从而可以设计出最大化转基因表达的方法。

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