Drug Delivery, Disposition and Dynamics, Monash Institute of Pharmaceutical Sciences, Monash University, 381 Royal Parade, Parkville, Melbourne, VIC, 3052, Australia.
AAPS PharmSciTech. 2013 Mar;14(1):38-44. doi: 10.1208/s12249-012-9895-z. Epub 2012 Nov 30.
The objective of this study was to investigate the effect of particle surface coating with magnesium stearate on the aerosolization of dry powder inhaler formulations. Micronized salbutamol sulphate as a model drug was dry coated with magnesium stearate using a mechanofusion technique. The coating quality was characterized by X-ray photoelectron spectroscopy. Powder bulk and flow properties were assessed by bulk densities and shear cell measurements. The aerosol performance was studied by laser diffraction and supported by a twin-stage impinger. High degrees of coating coverage were achieved after mechanofusion, as measured by X-ray photoelectron spectroscopy. Concomitant significant increases occurred in powder bulk densities and in aerosol performance after coating. The apparent optimum performance corresponded with using 2% w/w magnesium stearate. In contrast, traditional blending resulted in no significant changes in either bulk or aerosolization behaviour compared to the untreated sample. It is believed that conventional low-shear blending provides insufficient energy levels to expose host micronized particle surfaces from agglomerates and to distribute guest coating material effectively for coating. A simple ultra-high-shear mechanical dry powder coating step was shown as highly effective in producing ultra-thin coatings on micronized powders and to substantially improve the powder aerosolization efficiency.
本研究旨在考察硬脂酸镁颗粒表面涂层对干粉吸入制剂气溶胶化的影响。采用机械融合技术,以硫酸沙丁胺醇微粉化为模型药物,对其进行硬脂酸镁的干涂层。采用 X 射线光电子能谱法对涂层质量进行了表征。通过堆密度和剪切箱测量评估了粉末的堆积和流动性能。通过激光衍射研究了气溶胶性能,并通过双级撞击器进行了支持。X 射线光电子能谱法测量结果表明,机械融合后达到了高的涂层覆盖率。与涂层前相比,粉末堆积密度和气溶胶性能均显著提高。明显的最佳性能对应于使用 2%w/w 硬脂酸镁。相比之下,与未处理的样品相比,传统的混合处理对堆积或气溶胶化行为均无显著变化。据信,传统的低剪切混合提供的能量水平不足以暴露团聚体中主微粉化颗粒的表面,并有效地分散客涂覆材料以进行涂覆。研究表明,简单的超高剪切机械干粉涂层步骤非常有效地在微粉化粉末上形成超薄涂层,并大大提高了粉末的气溶胶化效率。