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A new drug nanocarrier consisting of chitosan and hydoxypropylcyclodextrin.

机译:一种由壳聚糖和羟丙基环糊精组成的新型药物纳米载体。

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摘要

The objective of the present work was to develop a new drug nanocarrier consisting of nanoparticles made of chitosan and cyclodextrins. The rationale behind the design of this new nanosystem was to simultaneously implement the cyclodextrin drug complexation power and the inherent properties of chitosan nanoparticles, in a unique delivery system. The complexation with the cyclodextrin permits the solubilization as well as the protection for sensitive drugs, whereas the entrapment in the chitosan network is expected to facilitate their absorption. Chitosan nanoparticles including hydroxypropylcyclodextrins could be prepared by the ionic crosslinking of chitosan with sodium tripolyphosphate in the presence of cyclodextrins. Two hydrophobic drugs, triclosan and furosemide, were selected as models for complexation with the cyclodextrin and further entrapment in the chitosan nanocarrier. The resulting nanosystems were thoroughly characterized for their size and zeta potential and also for their ability to associate and deliver the complexed drugs. The results showed that the size of the nanoparticles was slightly affected by the incorporation of cyclodextrins, whereas the zeta potential did not suffer a significant modification. Moreover, the complexation of the drugs with the cyclodextrin facilitated their entrapment into the nanoparticles, increasing up to 4 and 10 times (for triclosan and furosemide, respectively) the final drug loading of the nanoparticles. These results led to the conclusion that the drug-cyclodextrin complex was efficiently retained in the nanoparticulate structure. Finally, the in vitro release profile observed for these nanoparticles was characterized by an initial fast release followed by a delayed release phase. In conclusion, this new nanosystem offers an interesting potential for the transmucosal delivery of hydrophobic compounds.
机译:本工作的目的是开发一种由壳聚糖和环糊精制成的纳米颗粒组成的新型药物纳米载体。设计这种新纳米系统的基本原理是在独特的递送系统中同时实现环糊精的药物络合能力和壳聚糖纳米颗粒的固有特性。与环糊精的络合使得对敏感药物具有增溶作用和保护作用,而壳聚糖网络中的包埋有望促进其吸收。可以通过在环糊精存在下将壳聚糖与三聚磷酸钠进行离子交联来制备包括羟丙基环糊精的壳聚糖纳米颗粒。选择了两种疏水性药物三氯生和速尿作为与环糊精络合并进一步截留在壳聚糖纳米载体中的模型。所得纳米系统的大小和Zeta电位以及其缔合和递送复合药物的能力都得到了彻底的表征。结果表明,环糊精的掺入对纳米颗粒的尺寸有轻微的影响,而ζ电势没有明显的改变。而且,药物与环糊精的络合促进了它们被截留到纳米颗粒中,最终使纳米颗粒的最终载药量增加了4倍和10倍(分别是三氯生和速尿)。这些结果得出结论,药物-环糊精复合物被有效地保留在纳米颗粒结构中。最后,观察到的这些纳米粒子的体外释放曲线的特征是初始快速释放,然后是延迟释放阶段。总之,这种新的纳米系统为疏水性化合物的跨粘膜递送提供了有趣的潜力。

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