实验设计制备口服利福平壳聚糖纳米颗粒。

Journal of drug delivery Pub Date : 2013-01-01 Epub Date: 2013-08-18 DOI:10.1155/2013/370938
Bhavin K Patel, Rajesh H Parikh, Pooja S Aboti
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引用次数: 79

摘要

目标。本研究的主要目的是通过实验设计(DOE)开发和优化利福平口服缓释壳聚糖纳米颗粒(CNs)。方法。采用改性乳液离子凝胶法制备了CNs。在这里,将疏水药物片段包含在亲水聚合物基质中,应用于使用CN递送利福平。通过选择壳聚糖浓度(X 1)、三聚磷酸盐浓度(X 2)和均质速度(X 3)等自变量,采用2(3)全因子设计,以获得具有最大包封率和载药量的理想粒径。通过检查点分析对设计进行了验证,并利用理想函数对配方进行了优化。结果。结果表明,优化后的样品粒径为221.9 nm,包封率为44.17±1.98%,载药量为42.96±2.91%。体外释放数据显示,优化后的制剂先是爆发,然后缓慢持续释放。中枢神经系统药物释放动力学最符合Higuchi模型。结论。实验设计是获得利福平负载神经网络所需特性的重要工具。体外研究表明,口服缓释CNs可能是一种有效的结核病药物递送系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of oral sustained release rifampicin loaded chitosan nanoparticles by design of experiment.

Objective. The main objective of the present investigation was to develop and optimize oral sustained release Chitosan nanoparticles (CNs) of rifampicin by design of experiment (DOE). Methodology. CNs were prepared by modified emulsion ionic gelation technique. Here, inclusion of hydrophobic drug moiety in the hydrophilic matrix of polymer is applied for rifampicin delivery using CN. The 2(3) full-factorial design was employed by selecting the independent variables such as Chitosan concentration (X 1), concentration of tripolyphosphate (X 2), and homogenization speed (X 3) in order to achieve desired particle size with maximum percent entrapment efficiency and drug loading. The design was validated by checkpoint analysis, and formulation was optimized using the desirability function. Results. Particle size, drug entrapment efficiency, and drug loading for the optimized batch were found to be 221.9 nm, 44.17 ± 1.98% W/W, and 42.96 ± 2.91% W/W, respectively. In vitro release data of optimized formulation showed an initial burst followed by slow sustained drug release. Kinetic drug release from CNs was best fitted to Higuchi model. Conclusion. Design of Experiment is an important tool for obtaining desired characteristics of rifampicin loaded CNs. In vitro study suggests that oral sustained release CNs might be an effective drug delivery system for tuberculosis.

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来源期刊
Journal of drug delivery
Journal of drug delivery PHARMACOLOGY & PHARMACY-
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