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Modified Nanoprecipitation Method for Preparation of Cytarabine-Loaded PLGA Nanoparticles

机译:修饰的纳米沉淀法制备阿糖胞苷的PLGA纳米颗粒

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摘要

The present investigation was aimed at developing cytarabine-loaded poly(lactide-coglycolide) (PLGA)-based biodegradable nanoparticles by a modified nanoprecipitation which would have sustained release of the drug. Nine batches were prepared as per 32 factorial design to optimize volume of the co-solvent (0.22–0.37 ml) and volume of non-solvent (1.7–3.0 ml). A second 32 factorial design was used for optimization of drug: polymer ratio (1:5) and stirring time (30 min) based on the two responses, mean particle size (125 ± 2.5 nm), and percentage entrapment efficiency (21.8 ± 2.0%) of the Cyt-PLGA nanoparticles. Optimized formulation showed a zeta potential of −29.7 mV indicating good stability; 50% w/w of sucrose in Cyt-PLGA NP was added successfully as cryoprotectant during lyophilization for freeze-dried NPs and showed good dispersibility with minimum increase in their mean particle sizes. The DSC thermograms concluded that in the prepared PLGA NP, the drug was present in the amorphous phase and may have been homogeneously dispersed in the PLGA matrix. In vitro drug release from the pure drug was complete within 2 h, but was sustained up to 24 h from PLGA nanoparticles with Fickian diffusion. Stability studies showed that the developed PLGA NPs should be stored in the freeze-dried state at 2–8°C where they would remain stable in terms of both mean particle size and drug content for 2 months.
机译:本研究旨在通过修饰的纳米沉淀来开发阿糖胞苷负载的聚丙交酯-乙交酯(PLGA)基可生物降解的纳米颗粒,这种修饰可以使药物持续释放。根据3 2 析因设计准备了9批批次,以优化助溶剂的体积(0.22-0.37 ml)和非溶剂的体积(1.7-3.0 ml)。第二个3 2 析因设计用于优化药物:聚合物比率(1:5)和搅拌时间(30分钟),这是基于两个响应(平均粒径(125±2.5 nm)) Cyt-PLGA纳米粒子的包封率(21.8%±2.0%)。优化配方显示zeta电位为-29.7 mV,表明稳定性好; Cyt-PLGA NP中的50%w / w蔗糖在冻干过程中成功添加为冷冻干燥的NPs的冷冻保护剂,并显示出良好的分散性,其平均粒径增加最小。 DSC热分析图得出结论,在制备的PLGA NP中,药物存在于无定形相中,并且可能已均匀分散在PLGA基质中。纯药物的体外药物释放在2小时内完成,但从具有Fickian扩散的PLGA纳米颗粒中持续长达24小时。稳定性研究表明,已开发的PLGA NP应在2–8°C冷冻干燥状态下保存,在那里它们在平均粒径和药物含量方面都将保持稳定2个月。

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