首页> 外文期刊>Journal of Turbulence >Investigation into the Manufacture and Properties of Inhalable High-Dose Dry Powders Produced by Comilling API and Lactose with Magnesium Stearate
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Investigation into the Manufacture and Properties of Inhalable High-Dose Dry Powders Produced by Comilling API and Lactose with Magnesium Stearate

机译:用镁硬脂酸镁制备可吸入高剂量干粉的制造和性能的调查

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摘要

The aim of the study was to understand the impact of different concentrations of the additive material, magnesium stearate (MGST), and the active pharmaceutical ingredient (API), respectively, on the physicochemical properties and aerosol performance of comilled formulations for high-dose delivery. Initially, blends of API/lactose with different concentrations of MGST (1-7.5% w/w) were prepared and comilled by the jet-mill apparatus. The optimal concentration of MGST in comilled formulations was investigated, specifically for agglomerate structure and strength, particle size, uniformity of content, surface coverage, and aerosol performance. Secondly, comilled formulations with different API (1-40% w/w) concentrations were prepared and similarly analyzed. Comilled 5% MGST (w/w) formulation resulted in a significant improvement in in vitro aerosol performance due to the reduction in agglomerate size and strength compared to the formulation comilled without MGST. Higher concentrations of MGST (7.5% w/w) led to reduction in aerosol performance likely due to excessive surface coverage of the micronized particles by MGST, which led to failure in uniformity of content and an increase in agglomerate strength and size. Generally, comilled formulations with higher concentrations of API increased the agglomerate strength and size, which subsequently caused a reduction in aerosol performance. High-dose delivery was achieved at API concentration of >20% (w/w). The study provided a platform for the investigation of aerosol performance and physicochemical properties of other API and additive materials in comilled formulations for the emerging field of high-dose delivery by dry powder inhalation.
机译:该研究的目的是了解不同浓度的添加剂材料,硬脂酸镁(MGST)和活性药物成分(API)的影响,分别对高剂量递送的经络配方的物理化学性质和气溶胶性能。最初,制备具有不同浓度的MgST(1-7.5%w / w)的API /乳糖的共混物,并通过喷射器装置进行。研究了在传播配方中的最佳浓度,专门用于聚集结构和强度,粒度,含量均匀,表面覆盖和气溶胶性能。其次,制备具有不同API(1-40%w / w)浓度的传播配方并类似地分析。传染5%MGST(W / W)制剂导致体外气溶胶性能的显着改善,因为与没有MGST的制剂相比,凝聚尺寸和强度的减少,导致的体外气溶胶性能。较高浓度的MGST(7.5%w / w)导致气溶胶性能的降低可能由于MGST的微粉化颗粒的过度表面覆盖而导致的,这导致含量均匀的均匀性和凝聚强度和尺寸的增加。通常,具有较高浓度API的传播制剂增加了聚集强度和尺寸,随后导致气溶胶性能降低。在API浓度为> 20%(w / w)的高剂量递送。该研究提供了通过干粉吸入的高剂量递送的新出现领域的制剂中其他API和添加剂材料的气溶胶性能和物理化学性能的平台。

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