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Influence of excipients on physical and aerosolization stability of spray dried high-dose powder formulations for inhalation

机译:赋形剂对喷雾干燥高剂量吸入粉剂的物理和雾化稳定性的影响

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摘要

The aim of this study is to investigate the influence of excipients on physical and aerosolization stability of spray dried Ciprofloxacin dry powder inhaler formulations. The model drug, Ciprofloxacin hydrochloride, was co-spray dried with excipients such as disaccharides (sucrose, lactose, trehalose), mannitol and L-leucine. The spray dried samples were stored at two different relative humidity (RH) conditions of: (1) 20% and (2) 55% RH at 20ºC. Ciprofloxacin co-spray dried with disaccharides and L-leucine in the mass ratio of 1:1 demonstrated an increase in fine particle fraction (FPF) as compared with the spray dried Ciprofloxacin alone when stored at 20% RH. However, deterioration in FPF of Ciprofloxacin co-spray dried with disaccharide and mannitol was observed upon storage at 55% RH as compared to the corresponding formulations stored at 20% RH due to particle agglomeration. Whereas, 10% and 50% w/w L-leucine in the formulation showed no change in aerosol performance (FPF of 71.1 ± 3.5%. and 79.5 ± 3.1%, respectively) when stored at 55% RH for 10 days as compared to 20% RH (FPF of 68.1 ± 0.3% and 73.6 ± 7.1%, respectively). L-leucine demonstrated short-term aerosolization stability by alleviating crystallization of Ciprofloxacin to some extent and preventing significant change in particle morphology. L-leucine is well-recognized as aerosolization enhancer; our study has shown L-leucine is also a physical and aerosolization stabilizer for spray dried Ciprofloxacin DPI formulations. Such stability enhancing activities were attributed to the enrichment of L-leucine on the particle surface as confirmed by XPS data, and intermolecular interactions between L-leucine and Ciprofloxacin as measured by FT-IR.
机译:这项研究的目的是研究赋形剂对喷雾干燥的环丙沙星干粉吸入剂配方的物理和雾化稳定性的影响。将模型药物盐酸环丙沙​​星与赋形剂如二糖(蔗糖,乳糖,海藻糖),甘露醇和L-亮氨酸共同喷雾干燥。喷雾干燥的样品在两种不同的相对湿度(RH)条件下存储:(1)20%和(2)在20ºC下的55%RH。与二糖和L-亮氨酸以1:1的质量比共同喷雾干燥的环丙沙星与单独喷雾干燥的环丙沙星在20%RH储存时相比,显示出细颗粒分数(FPF)的增加。然而,与在20%RH下储存的相应制剂相比,由于颗粒团聚,与二糖和甘露醇共同喷雾干燥的环丙沙星的FPF与在20%RH下储存的相应制剂相比观察到。与10%和50%w / w L-亮氨酸相比,在55%RH下存放10天时,气雾剂性能无变化(FPF分别为71.1±3.5%和79.5±3.1%)。相对湿度20%(FPF分别为68.1±0.3%和73.6±7.1%)。 L-亮氨酸通过减轻环丙沙星的结晶并防止颗粒形态发生显着变化,证明了短期雾化稳定性。 L-亮氨酸是公认的雾化增强剂。我们的研究表明,L-亮氨酸还是喷雾干燥的环丙沙星DPI制剂的物理和雾化稳定剂。这种稳定性增强活性归因于XPS数据证实的L-亮氨酸在颗粒表面的富集,以及L-亮氨酸与环丙沙星之间的分子间相互作用(通过FT-IR测定)。

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