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Exploring the assembly process and properties of novel crosslinker-free hyaluronate-based polyelectrolyte complex nanocarriers

机译:探索新型无交联透明质酸基聚电解质复合纳米载体的组装工艺和性能

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The aim of this work was to study the formulation of pharmaceutically relevant polyelectrolyte complex nanoparticles (NPs) composed of hyaluronic acid (HA) and chitosan (CS) containing no crosslinkers. The influence of polymer mixing ratio, concentration and molecular weight as well as the type of counterion in chitosan salt on properties of the resulting NPs was examined. Formulations and their components were studied by laser light scattering, viscosity, infrared spectroscopy and microscopy. Physical stability, isoelectric points and cytotoxicity of selected NPs were determined. By appropriate modification of HA molecular weight, stable and non-sedimenting NPs were successfully formed. Sonication was found to be an effective method to reduce the molecular weight of HA from 2882 ± 25 to 176 ± 4 kDa with no chemical changes in the HA structure observed. High molecular weight CS formed micron-sized entities at all compositions investigated. Positively and negatively charged NPs were obtained depending on the mixing ratio of the polymers, with CS glutamate NPs yielding more negatively charged particles compared to CS chloride NPs. The smallest NPs (149 ± 11 nm) were formed using HA with molecular weight of 176 kDa. Cytotoxicity of NPs was dependent on environmental pH but HA was found to exert cytoprotective effects on Caco-2 cells
机译:这项工作的目的是研究由透明质酸(HA)和不含交联剂的壳聚糖(CS)组成的药物相关的聚电解质复合纳米颗粒(NPs)的配方。研究了聚合物混合比,浓度和分子量以及壳聚糖盐中抗衡离子类型对所得NPs性能的影响。通过激光散射,粘度,红外光谱和显微镜研究了制剂及其成分。测定了所选NP的物理稳定性,等电点和细胞毒性。通过适当修改HA分子量,可以成功地形成稳定且无沉淀的NP。发现超声处理是一种有效的方法,可以将HA的分子量从2882±25 kDa降低到176±4 kDa,而HA结构没有化学变化。在所有研究的组成中,高分子量CS形成微米级的实体。根据聚合物的混合比例,可得到带正电荷和带负电荷的NP,与CS氯化物NP相比,CS谷氨酸NP产生的带负电荷的颗粒更多。使用HA形成分子量为176 kDa的最小NP(149±11 nm)。 NPs的细胞毒性取决于环境pH值,但发现HA对Caco-2细胞具有细胞保护作用

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