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储存相对湿度对吸入用昔萘酸沙美特罗粉分散性的影响。

Influence of storage relative humidity on the dispersion of salmeterol xinafoate powders for inhalation.

作者信息

Das Shyamal, Larson Ian, Young Paul, Stewart Peter

机构信息

Drug Delivery, Disposition and Dynamics, Monash Institute of Pharmaceutical Sciences, Monash University (Parkville Campus), 381 Royal Parade, Victoria 3052, Australia.

出版信息

J Pharm Sci. 2009 Mar;98(3):1015-27. doi: 10.1002/jps.21500.

Abstract

The in vitro dispersion of salmeterol xinafoate (SX) alone and four SX (2.5%)-coarse lactose (CL) mixtures containing 0%, 5%, 10% and 20% micronised lactose (ML) was monitored during 18-month storage at 33%, 55% and 75% relative humidity (RH) using a twin stage impinger. The surface moisture was monitored over 2 months by thermo gravimetric analysis. The morphology was determined by scanning electron microscopy. An aerosizer was used to compare the agglomerate strengths of formulations before and after storage at 75% RH. Upon storage, no significant difference occurred in fine particle fraction (FPF) of any formulation at 33% and 55% RH. Within 8 weeks, the FPF of mixture containing 20% ML (M20F) significantly decreased from 11.3% to 7.7% at 75% RH (p = 0.008) and to 4.9% at 95% RH (p = 0.001). The calculated capillary forces were greater for ML-ML contact than other particle interactions and the propensity of ML-ML contacts was higher in M20F. The agglomerate strength of M20F significantly increased after storage. The study concluded that the critical factors for decreased dispersion of SX formulations were RH of 75% or greater and the presence of high concentrations of ML due to capillary forces and/or solid bridge formation of ML leading to increased agglomerate strength.

摘要

使用两级撞击器,在33%、55%和75%相对湿度(RH)条件下储存18个月期间,监测了昔萘酸沙美特罗(SX)单独制剂以及四种含0%、5%、10%和20%微粉化乳糖(ML)的SX(2.5%)-粗乳糖(CL)混合物的体外分散情况。通过热重分析在2个月内监测表面水分。通过扫描电子显微镜确定形态。使用气溶胶粒度分析仪比较在75%RH储存前后制剂的团聚体强度。储存后,在33%和55%RH条件下,任何制剂的细颗粒分数(FPF)均未出现显著差异。在8周内,含20%ML的混合物(M20F)的FPF在75%RH时从11.3%显著降至7.7%(p = 0.008),在95%RH时降至4.9%(p = 0.001)。计算得出,ML-ML接触的毛细作用力大于其他颗粒间相互作用,且M20F中ML-ML接触的倾向更高。储存后,M20F的团聚体强度显著增加。该研究得出结论,SX制剂分散性降低的关键因素是75%或更高的RH以及高浓度ML的存在,这是由于毛细作用力和/或ML形成固体桥导致团聚体强度增加所致。

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