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Modifying internal organization and surface morphology of siRNA lipoplexes by sodium alginate addition for efficient siRNA delivery

机译:通过藻酸钠添加SiRNA脂蛋体的内部组织和表面形态,用于高效siRNA递送

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Vectorized small interfering RNAs (siRNAs) are widely used to induce specific mRNA degradation in the intracellular compartment of eukaryotic cells. Recently, we developed efficient cationic lipid-based siRNA vectors (siRNA lipoplexes or siLex) containing sodium alginate (Nalg-siLex) with superior efficiency and stability properties than siLex. In this study, we assessed the physicochemical and some biological properties of Nalg-siLex compared to siLex. While no significant differences in size, zeta potential and siRNA compaction were detected, the addition of sodium alginate modified the particle morphology, producing smoother and heterogeneous particles characterized by transmission electron microscopy. We also noted that Nalg-siLex have surface differences observed by X-ray photoelectron spectroscopy. These differences could arise from an internal reorganization of components induced by the addition of sodium alginate, that is indicated by Small-Angle X-ray Scattering results. Moreover, Nalg-siLex did not trigger significant hepatotoxicity nor inflammatory cytokine secretion compared to siLex. Taken together these results suggest that sodium alginate played a key role by structuring and reinforcing siRNA lipoplexes, leading to more stable and efficient delivery vector. (C) 2019 Elsevier Inc. All rights reserved.
机译:矢量化小干扰RNA(siRNA)广泛用于在真核细胞的细胞内隔室中诱导特异性mRNA降解。最近,我们开发了含有藻酸钠(NALG-SILEX)的高效阳离子脂质的siRNA载体(siRNA脂质体或SILEx),其效率优于Silex。在这项研究中,与Silex相比,我们评估了Nalg-Silex的物理化学和一些生物学性质。虽然未检测到尺寸的显着差异,但检测到Zeta电位和siRNA压实,加入藻酸钠改性颗粒形态,产生透射电子显微镜的更平滑和特征的异质颗粒。我们还指出,NALG-SILEX通过X射线光电子能谱观察到表面差异。这些差异可能来自通过加入藻酸钠诱导的组分的内部重组而产生,其由小角度X射线散射结果表示。此外,与Silex相比,Nalg-Silex没有引发显着的肝毒性也不引发炎症细胞因子分泌。这些结果表明,海藻酸钠通过结构化和增强siRNA脂质物,导致更稳定和有效的交付载体发挥了关键作用。 (c)2019 Elsevier Inc.保留所有权利。

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