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Preparation and statistical optimization of Losartan Potassium loaded nanoparticles using Box Behnken factorial design: Microreactor precipitation

机译:运用Box Behnken因子设计:微反应器沉淀法制备氯沙坦钾负载纳米粒子并进行统计优化

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The current study deals with the development and optimization of Losartan Potassium (LP) loaded nanoparticles by continuous flow microreactor precipitation methodology for sustained release. Formulation of LP loaded nanoparticles was conducted by using box Behnken (3(3)) experimental design to evaluate the effect of three independent process variables viz., polymer concentration (Ethyl cellulose, Xi), surfactant concentration (Tween 80, X-2) and the inner diameter (1(3) of the microreactor on the preferred responses: encapsulation efficiency (Y-1) and drug release (Y-2) over 12 h. The average particle size and polydispersity index of LP loaded nanoparticles were characterized by particle size analyzer. The interaction between ethyl cellulose and the LP was investigated by FTIR spectroscopy. The surface morphology and physical nature of LP loaded nanoparticle were characterized by FESEM and XRD analysis, respectively. The design formulations showed the encapsulation efficiency within the range of 57.5 to 82.8% with sustained release profile of 77.2 to 100% over 12 h. The actual and predicted values of both the responses were close to each other. It is verified that the Box Behnken factorial design provides a useful platform for the optimization of LP loaded nanoparticle by microreactor precipitation methodology. (C) 2015 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:当前的研究通过持续流动的微反应器沉淀方法来研究和优化负载洛沙坦钾(LP)的纳米颗粒。使用Box Behnken(3(3))实验设计进行了LP负载纳米颗粒的配制,以评估三个独立的工艺变量(聚合物浓度(乙基纤维素,Xi),表面活性剂浓度(Tween 80,X-2))的影响微反应器的内径(1(3)对最佳反应:包封率(Y-1)和药物释放(Y-2)在12小时内)负载LP的纳米颗粒的平均粒径和多分散指数通过通过FTIR光谱研究了乙基纤维素与LP之间的相互作用,通过FESEM和XRD分析表征了负载LP的纳米颗粒的表面形貌和物理性质,设计配方表明其包封率在57.5范围内达到82.8%,持续释放曲线在12小时内达到77.2至100%,两种反应的实际值和预测值彼此接近。 Behnken因子设计为通过微反应器沉淀法优化LP负载的纳米颗粒提供了有用的平台。 (C)2015化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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