Young Paul M, Sung Adrian, Traini Daniela, Kwok Philip, Chiou Herbert, Chan Hak-Kim
Advanced Drug Delivery Group, Faculty of Pharmacy, University of Sydney, Sydney, NSW, 2006, Australia.
Pharm Res. 2007 May;24(5):963-70. doi: 10.1007/s11095-006-9218-8. Epub 2007 Mar 22.
To investigate the influence of storage relative humidity (RH) on the aerosolisation efficiency and tribo-electrification of carrier based dry powder inhaler (DPI) formulations using the next generation impactor (NGI) in vitro methodology and the electrostatic low pressure impactor (ELPI). Micronised salbutamol (d (0.5) 1.48 +/- 0.03 microm) was blended with 63-90 microm sieve fractioned alpha-lactose monohydrate carrier and stored at a range of humidities (0-84% RH). The aerosolisation efficiency after storage for 24 h periods was investigated using the NGI. The same experiment was conducted using the ELPI, with corona charger switched off, to measure the net charge vs. mass deposition profile. Significant variations in the aerosolisation efficiency of the formulation were observed with respect to storage RH. In general, the fine particle fraction aerosol performance measured by NGI and ELPI (fraction with mass median aerodynamic diameter <4.46 and 4.04 microm, respectively) followed a positive parabola with aerosol performance increasing over the range 0-60% RH before decreasing >60% RH. Analysis of the ELPI charge data suggested that the micronised salbutamol sulphate had an electronegative charge when aerosolised from lactose based carriers, which was most electronegative at low RH. Increased storage RH resulted in a reduction in net charge to mass ratio with the greatest reduction at RH >60%. The aerosol performance of this binary system is dependent on both electrostatic and capillary forces. The use of the ELPI allows a degree of insight into how these forces affect formulation performances after storage at different RH.
使用下一代撞击器(NGI)体外方法和静电低压撞击器(ELPI),研究储存相对湿度(RH)对基于载体的干粉吸入器(DPI)制剂雾化效率和摩擦起电的影响。将微粉化沙丁胺醇(d(0.5) 1.48±0.03微米)与63 - 90微米筛分级的一水合α-乳糖载体混合,并在一系列湿度(0 - 84%RH)下储存。使用NGI研究储存24小时后的雾化效率。使用ELPI进行相同实验,关闭电晕充电器,以测量净电荷与质量沉积曲线。观察到制剂的雾化效率随储存RH有显著变化。一般来说,通过NGI和ELPI测量的细颗粒部分雾化性能(质量中位空气动力学直径分别<4.46和4.04微米的部分)呈正抛物线,在0 - 60%RH范围内雾化性能增加,在>60%RH时降低。对ELPI电荷数据的分析表明,微粉化硫酸沙丁胺醇从基于乳糖的载体雾化时带负电荷,在低RH时最负。储存RH增加导致净电荷与质量比降低,在RH>60%时降低最大。该二元系统的雾化性能取决于静电力和毛细力。ELPI的使用有助于深入了解这些力如何影响在不同RH下储存后制剂的性能。