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A comparative study of three ternary complexes prepared in different mixing orders of siRNA/redox-responsive hyperbranched poly (amido amine)/hyaluronic acid

机译:三种不同siRNA /氧化还原反应性高支化聚(酰胺胺)/透明质酸混合顺序制备的三元复合物的比较研究

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Abstract: In this study, a novel redox-responsive hyperbranched poly(amido amine) (named PCD) was synthesized and used as a cationic polymer to form a ternary complex with small interfering RNA (siRNA) and hyaluronic acid (HA) for siRNA delivery. Here, it is hypothesized that different mixing orders result in different assembly structures, which may affect the siRNA delivery efficiency. To investigate the effects of mixing orders on siRNA delivery efficiency in two human breast cancer cell lines, three ternary complexes with different mixing orders of siRNA/PCD/HA were prepared and characterized: mixing order I (initially prepared siRNA/PCD binary complex further coated by negatively charged HA), mixing order II (initially prepared HA/PCD binary complex further incubated with siRNA), and mixing order III (initially prepared siRNA/HA mixture further electrostatically compacted by positively charged PCD). With an optimized siRNA/PCD/HA charge ratio of 1/20/16, the particle sizes and zeta potentials of these ternary complexes were 124.8 nm and 27.3 mV (mixing order I), 147.5 nm and 29.9 mV (mixing order II), and 128.8 nm and 19.4 mV (mixing order III). Also, the effects on stability, cellular uptake, and gene silencing efficiency of siRNA formulated in ternary complexes with different mixing orders were investigated. The results showed that mixing orders I and III displayed better siRNA transfection and protection than mixing order II in human breast cancer MCF-7 and MDA-MB-231 cells. More interesting, at the siRNA/PCD/HA charge ratio of 1/20/16, the gene silencing effects on vascular endothelial growth factor expression in MDA-MB-231 cells were as follows: mixing order III > mixing order I > mixing order II. Based on these results, a likely explanation for the difference in functionality dependent on mixing orders is the formation of different assembly structures. These results may help future optimization of siRNA ternary complexes for achieving better delivery efficiencies, especially for target-specific siRNA delivery to cells with HA receptor overexpression.
机译:摘要:在这项研究中,合成了一种新型的氧化还原响应性超支化聚(酰胺基胺)(称为PCD),并用作阳离子聚合物,形成了具有小干扰RNA(siRNA)和透明质酸(HA)的三元复合物,用于siRNA的递送。 。在此,假设不同的混合顺序导致不同的组装结构,这可能会影响siRNA的输送效率。为了研究混合顺序对两种人乳腺癌细胞系中siRNA递送效率的影响,制备了三种不同siRNA / PCD / HA混合顺序的三元复合物,并进行了表征:混合顺序I(最初制备的siRNA / PCD二元复合物进一步包被通过带负电荷的HA),混合顺序II(初始制备的HA / PCD二元复合物进一步与siRNA孵育)和混合顺序III(初始制备的siRNA / HA混合物通过带正电的PCD进一步静电压实)。在优化的siRNA / PCD / HA电荷比为1/20/16的情况下,这些三元复合物的粒径和Zeta电位分别为124.8 nm和27.3 mV(混合顺序I),147.5 nm和29.9 mV(混合顺序II), 128.8 nm和19.4 mV(混合顺序III)。此外,还研究了不同混合顺序的三元复合物对siRNA稳定性,细胞摄取和基因沉默效率的影响。结果显示,在人乳腺癌MCF-7和MDA-MB-231细胞中,混合顺序I和III显示出比混合顺序II更好的siRNA转染和保护。更有趣的是,在siRNA / PCD / HA电荷比为1/20/16的情况下,基因沉默对MDA-MB-231细胞中血管内皮生长因子表达的影响如下:混合顺序III>混合顺序I>混合顺序二。基于这些结果,取决于混合顺序的功能差异的一种可能解释是形成不同的装配结构。这些结果可能有助于将来优化siRNA三元复合物以获得更好的递送效率,尤其是将靶标特异性siRNA递送至具有HA受体过表达的细胞。

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