首页> 外文期刊>Journal of pharmaceutical sciences. >Interaction of Formulation and Device Factors Determine the In Vitro Performance of Salbutamol Sulphate Dry Powders for Inhalation
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Interaction of Formulation and Device Factors Determine the In Vitro Performance of Salbutamol Sulphate Dry Powders for Inhalation

机译:配方和设备因素的相互作用决定了沙丁胺醇硫酸盐干粉的体外吸入性能

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摘要

A variety of capsule-based dry powder inhalers were used to evaluate formulation-device interaction. The in vitro deposition of salbutamol sulphate (SS) was compared directly to published data for salmeterol xinafoate (SX). A 3(2) factorial design was used to assess the effect of SS formulations with three blends of different grade coarse lactose supplemented with different levels of fine lactose. These formulations were tested for homogeneity and evaluated for their in vitro deposition using Aeroliser, Handihaler and Rotahaler devices. The performance of the SS-lactose formulations differed across the grade of lactose and amount of fine lactose used compared to the same powder compositions blended with SX. SX had a greater fine particle fraction than SS for most of the comparable formulations, probably because of the different cohesiveness of the drugs. A head-to-head comparison of matched' SX and SS formulations when aerosolised from the same three devices demonstrated that formulation-device interactions are as critical in determining the in vitro deposition of drug-lactose blends as the identity of the active pharmaceutical ingredient. This work has revealed the limitations of the interpretative value of published in vitro performance data generated with a single device (even at equivalent aerosolisation force), when designing formulations for a different device. (c) 2015 Wiley Periodicals, Inc. and the American Pharmacists Association J Pharm Sci 104:3861-3869, 2015
机译:各种基于胶囊的干粉吸入器用于评估配方与设备的相互作用。将硫酸沙丁胺醇(SS)的体外沉积物与沙美特罗西那福酯(SX)的公开数据直接进行了比较。 3(2)析因设计用于评估SS配方的效果,该配方具有三种不同等级的粗乳糖和不同水平的细乳糖的混合物。使用Aeroliser,Handihaler和Rotahaler设备测试这些制剂的均质性并评估其体外沉积。与掺入SX的相同粉末组合物相比,SS-乳糖制剂的性能在乳糖等级和所用细乳糖的量上有所不同。在大多数可比较的制剂中,SX的细粒级分比SS高,这可能是由于药物的内聚力不同所致。从相同的三个设备进行雾化时,匹配的SX和SS制剂的正面对比表明,在确定药物-乳糖混合物的体外沉积中,制剂-设备的相互作用与活性药物成分的身份一样重要。这项工作揭示了在为其他设备设计配方时,使用单个设备(即使在等效雾化力下)生成的体外性能数据的解释价值的局限性。 (c)2015年Wiley Periodicals,Inc.和美国药剂师协会J Pharm Sci 104:3861-3869,2015年

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