Chemistry and Drug Delivery Group, Medway School of Pharmacy, University of Kent, Chatham, Kent ME4 4TB, United Kingdom.
J Pharm Sci. 2011 Jul;100(7):2665-84. doi: 10.1002/jps.22483. Epub 2011 Jan 25.
It has been shown that dry powder inhaler (DPI) formulations typically achieve low fine particle fractions (poor performance). A commonly held theory is that this is due, at least in part, to low levels of detachment of drug from lactose during aerosolization as a result of strong adhesion of drug particles to the carrier surfaces. Therefore, the purpose of the present study is to overcome poor aerosolization performance of DPI formulation by modification of lactose particles. Lactose particles were crystallized by adding solution in water to different ratios of binary mixtures of ethanol-acetone. The results showed that modified lactose particles had exceptional aerosolization performance that makes them superior to commercial lactose particles. Morphology assessment showed that crystallized lactose particles were less elongated, more irregular in shape, and composed of smaller primary lactose particles compared with commercial lactose. Solid-state characterization showed that commercial lactose particles were α-lactose monohydrate, whereas crystallized lactose particles were a mixture of α-lactose monohydrate and β-lactose according to the ratio of ethanol-acetone used during crystallization process. The enhanced performance could be mainly due to rougher surface and/or higher amounts of fines compared with the lactose crystallized from pure ethanol or commercial lactose.
已经表明,干粉吸入器(DPI)制剂通常只能实现低的微细颗粒分数(性能不佳)。一个普遍的理论是,这至少部分是由于在气溶胶化过程中药物从乳糖上的脱附程度低,这是由于药物颗粒与载体表面的强烈粘附所致。因此,本研究的目的是通过对乳糖颗粒的改性来克服 DPI 制剂的不良气溶胶化性能。通过向水的溶液中添加不同比例的乙醇-丙酮二元混合物,使乳糖颗粒结晶。结果表明,改性乳糖颗粒具有优异的气溶胶化性能,使其优于商业乳糖颗粒。形态评估表明,与商业乳糖相比,结晶乳糖颗粒的长度较短,形状不规则,由较小的初级乳糖颗粒组成。固态特性表明,商业乳糖颗粒为α-乳糖一水合物,而结晶乳糖颗粒则根据结晶过程中使用的乙醇-丙酮的比例,为α-乳糖一水合物和β-乳糖的混合物。与从纯乙醇或商业乳糖结晶的乳糖相比,增强的性能主要归因于更粗糙的表面和/或更多的细粉。