Bunker Matthew J, Roberts Clive J, Davies Martyn C, James Michael B
Laboratory of Biophysics and Surface Analysis, School of Pharmacy, University of Nottingham, Nottingham NG7 2RD, UK.
Int J Pharm. 2006 Nov 15;325(1-2):163-71. doi: 10.1016/j.ijpharm.2006.06.024. Epub 2006 Jun 23.
Studies of single particle interactions in dry powder inhaler (DPI) formulations using atomic force microscopy (AFM) have recently grown in popularity. Currently, these experiments are all based on measuring particle adhesion forces. We broaden this approach by presenting a novel AFM friction study of single particles in a pharmaceutical system, to examine forces acting parallel to a surface. The sliding friction signal of lactose particles attached to AFM cantilevers was recorded in lateral force (LF) mode over 5 microm x 5 microm areas on five different surfaces chosen to represent both relevant inter-particle and particle-surface interactions. A ranking of friction forces was obtained as follows: glass approximately equal to zanamivir >zanamivir-magnesium stearate (99.5%/0.5%, w/w) blend approximately equal to magnesium stearate approximately equal to PTFE. The addition of magnesium stearate to the zanamivir surface dominated and significantly reduced the friction (Kruskal-Wallis test, P<0.001). AFM images of the contacting asperities of the lactose particles show changes in contact morphology due to two processes. Firstly the asperity wears flat due to abrasion and secondly small magnesium stearate particles transfer onto the asperity. It is proposed that in combination with AFM particle adhesion measurements, this method could be used to screen new formulations and the effectiveness of tertiary components in modifying carrier-drug interactions.
近年来,使用原子力显微镜(AFM)对干粉吸入器(DPI)制剂中的单颗粒相互作用进行研究越来越受到关注。目前,这些实验均基于测量颗粒粘附力。我们通过展示一种对药物系统中单个颗粒的新型AFM摩擦研究来拓宽这一方法,以研究平行于表面作用的力。在选择的五个不同表面上,以横向力(LF)模式在5微米×5微米的区域记录附着在AFM悬臂上的乳糖颗粒的滑动摩擦信号,这些表面代表了相关的颗粒间和颗粒 - 表面相互作用。获得的摩擦力排名如下:玻璃≈扎那米韦>扎那米韦 - 硬脂酸镁(99.5%/0.5%,w/w)混合物≈硬脂酸镁≈聚四氟乙烯。在扎那米韦表面添加硬脂酸镁占主导地位,并显著降低了摩擦力(Kruskal - Wallis检验,P<0.001)。乳糖颗粒接触粗糙处的AFM图像显示,由于两个过程,接触形态发生了变化。首先,粗糙处因磨损而变平,其次,小的硬脂酸镁颗粒转移到粗糙处。有人提出,结合AFM颗粒粘附测量,该方法可用于筛选新制剂以及第三组分在改变载体 - 药物相互作用方面的有效性。