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首页> 外文期刊>International Journal of Pharmaceutics >Aerosolization characteristics of dry powder inhaler formulations for the excipient enhanced growth (EEG) application: Effect of spray drying process conditions on aerosol performance
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Aerosolization characteristics of dry powder inhaler formulations for the excipient enhanced growth (EEG) application: Effect of spray drying process conditions on aerosol performance

机译:用于赋形剂增强生长(EEG)应用的干粉吸入器制剂的气雾化特性:喷雾干燥工艺条件对气雾剂性能的影响

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The aim of this study was to develop a spray dried submicrometer powder formulation suitable for the excipient enhanced growth (EEG) application. Combination particles were prepared using the Buchi Nano spray dryer B-90. A number of spray drying and formulation variables were investigated with the aims of producing dry powder formulations that were readily dispersed upon aerosolization and maximizing the fraction of submicrometer particles. Albuterol sulfate, mannitol, l-leucine, and poloxamer 188 were selected as a model drug, hygroscopic excipient, dispersibility enhancer and surfactant, respectively. Formulations were assessed by scanning electron microscopy and aerosol performance following aerosolization using an Aerolizer? dry powder inhaler (DPI). In vitro drug deposition was studied using a realistic mouth-throat (MT) model. Based on the in vitro aerosolization results, the best performing submicrometer powder formulation consisted of albuterol sulfate, mannitol, l-leucine and poloxamer 188 in a ratio of 30:48:20:2, containing 0.5% solids in a water:ethanol (80:20%, v/v) solution which was spray dried at 70 ??C. The submicrometer particle fraction (FPF1 ??m/ED) of this final formulation was 28.3% with more than 80% of the capsule contents being emitted during aerosolization. This formulation also showed 4.1% MT deposition. The developed combination formulation delivered a powder aerosol developed for the EEG application with high dispersion efficiency and low MT deposition from a convenient DPI device platform. ? 2013 Elsevier B.V.
机译:这项研究的目的是开发一种适用于赋形剂增强生长(EEG)应用的喷雾干燥的亚微米粉末制剂。使用Buchi Nano喷雾干燥器B-90制备组合颗粒。研究了许多喷雾干燥和配方变量,目的是生产在雾化后易于分散的干粉制剂,并使亚微米级颗粒的比例最大化。分别选择硫酸沙丁胺醇,甘露醇,1-亮氨酸和泊洛沙姆188作为模型药物,吸湿性赋形剂,分散性增强剂和表面活性剂。通过扫描电子显微镜对制剂进行评估,并使用Aerolizer?进行雾化后的气溶胶性能。干粉吸入器(DPI)。使用逼真的口咽(MT)模型研究了体外药物沉积。根据体外雾化结果,性能最好的亚微米粉末配方由硫酸沙丁胺醇,甘露醇,1-亮氨酸和泊洛沙姆188组成,比例为30:48:20:2,在水:乙醇中的含量为0.5%(80 :20%(v / v)溶液,在70℃下喷雾干燥。该最终制剂的亚微米级颗粒分数(FPF1Δm/ ED)为28.3%,雾化过程中释放出超过80%的胶囊含量。该配方还显示出4.1%的MT沉积。通过便捷的DPI设备平台,已开发的组合配方提供了为EEG应用开发的粉末气雾剂,具有高分散效率和低MT沉积的特点。 ? 2013 Elsevier B.V.

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