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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >A study of drug-carrier interactions in dry powder inhaler formulations using the Andersen cascade impactor, X-ray microanalysis and time of flight aerosol beam spectrometry (TOFABS).
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A study of drug-carrier interactions in dry powder inhaler formulations using the Andersen cascade impactor, X-ray microanalysis and time of flight aerosol beam spectrometry (TOFABS).

机译:使用安徒生级联撞击器,X射线微分析和飞行时间气溶胶束光谱法(TOFABS)对干粉吸入器制剂中的药物-载体相互作用进行研究。

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摘要

The purpose of this study was to determine the in vitro deposition of both drug (albuterol sulfate) and carrier (lactose) particles in relation to each other from a dry powder inhaler formulation using an Andersen cascade impactor (ACI) and time of flight aerosol beam spectrometry (TOFABS). In addition, scanning electron microscopy (SEM) combined with X-ray microanalysis was employed to distinguish albuterol sulfate from lactose. Drug particles apparently penetrated deeper into the impactor than lactose particles contained in the formulation. In some certain stages of impactor, drug particles were separated from lactose particles. Although the TOFABS cannot distinguish between albuterol sulfate and lactose, the TOF spectra obtained from the Aerosizer would appear to be partly indicative of the interactions which exist between drug and carrier. One symmetrical TOF peak was obtained from drug or lactose alone. The TOF peak of the drug was always lower than the TOF of lactose. The times obtained for each powder between experiments were highly reproducible and typical of material and particle size. The use of SEM-X-ray microanalysis also allowed some qualitative characterization of shape and state of association of the two components.
机译:这项研究的目的是确定使用安徒生级联撞击器(ACI)和飞行时间气溶胶束从干粉吸入器制剂中药物(硫酸沙丁胺醇)和载体(乳糖)颗粒在体外的相互沉积情况光谱法(TOFABS)。此外,采用扫描电子显微镜(SEM)结合X射线显微分析来区分硫酸沙丁胺醇和乳糖。与制剂中所含的乳糖颗粒相比,药物颗粒显然更深地渗透到撞击器中。在撞击器的某些阶段,药物颗粒与乳糖颗粒分离。尽管TOFABS无法区分硫酸沙丁胺醇和乳糖,但从Aerosizer获得的TOF光谱似乎部分表明了药物与载体之间存在相互作用。仅从药物或乳糖中获得一个对称的TOF峰。药物的TOF峰值始终低于乳糖的TOF。实验之间每种粉末获得的时间具有很高的重现性,并且具有典型的材料和粒径。 SEM-X射线微分析的使用还允许定性表征这两个组分的形状和缔合状态。

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