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Preparation and Characterization of Succinyl-Chitosan Nanoparticles for Drug Delivery

机译:琥珀酰壳聚糖纳米粒子用于药物递送的制备与表征

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Succinyl-Chitosan (SCS), a water soluble CS derivative, exhibits biocompatibility, low toxicity and long-term retention in the body. SCS offers unique characteristics as polymer for obtaining drug delivery nanosystems, due to its many reactive amino, hydroxyl, and carboxylic acid pendant groups. Chemical modifications of SCS with antibodies and other active species are easily achieved through bonding with these groups, allowing targeting and detection. In this work, SCS was obtained by amidation of primary amine groups of CS with succinic anhydride. The succinylation degree, determined by 1H-NMR, was 28%. Evaluation by zeta potential measurements of SCS showed a pH-dependent charge profile, which can be conveniently exploited to prepare pH-sensitive nanoparticles. Colloidal stable SCS/CS and SCS nanoparticles, useful in drug delivery, were prepared by ionic crosslinking from mixtures of CS and SCS in different weight percentages. Nanoparticles with sizes between 140-250 nm (after purification process) are obtained, which through further surface functionalization are suitable for application in drug delivery. The colloidal stability of the particles in water was studied by particle size measurements during 30 days and aggregation or formation of larger particles was not observed.
机译:琥珀酰壳聚糖(SCS),水溶性CS衍生物,在体内表现出生物相容性,低毒性和长期保留。由于其许多反应性氨基,羟基和羧酸侧组,SCS提供独特的特征作为获得药物递送纳米系统的聚合物。通过与这些基团结合,容易实现具有抗体和其他活性物质的SCS的化学修饰,允许靶向和检测。在这项工作中,通过用琥珀酸酐酰胺酰胺酰胺酰胺来获得SC。由1H-NMR确定的琥珀酰化程度为28%。 SCS的Zeta电位测量评估显示了pH依赖性电荷曲线,可以方便地利用以制备pH敏感的纳米颗粒。通过不同重量百分比的Cs和SCs的混合物离子交联制备用于药物递送的胶体稳定SCS / CS和SCS纳米粒子。得到140-250nm(纯化过程)之间的纳米颗粒,其通过进一步的表面官能化适用于药物递送。通过在30天内通过粒度测量研究水中颗粒的胶体稳定性,并且未观察到较大颗粒的聚集或形成。

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