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研究基于甘露醇的喷雾干燥粉末制剂中氨基酸成分相互作用对肺部给药的影响:一种实验设计方法。

Investigating the interactions of amino acid components on a mannitol-based spray-dried powder formulation for pulmonary delivery: A design of experiment approach.

机构信息

Drug Delivery, Disposition and Dynamics, Monash Institute of Pharmaceutical Sciences, Monash University, Parkville, Victoria 3052, Australia.

出版信息

Int J Pharm. 2011 Dec 15;421(2):220-9. doi: 10.1016/j.ijpharm.2011.09.018. Epub 2011 Sep 21.

Abstract

Combining an amino acid and a sugar is a known strategy in the formulation of spray or freeze dried biomolecule powder formulations. The effect of the amino acid leucine in enhancing performance of spray-dried powders has been previously demonstrated, but interaction effects of several constituents which may provide multiple benefits, are less well-understood. A 3 factor 2 level (2(3)) factorial design was used to study the effects of leucine, glycine and alanine in a mannitol-based dry powder formulation on particle size, aerosolisation, emitted dose and cohesion. Other qualitative tests including scanning electronic microscopy and X-ray powder diffraction were also conducted on the design of experiment (DoE) trials. The results show that the use of glycine and/or alanine, though structurally related to leucine, did not achieve similar aerosol performance enhancing effects, rather the particle formation was hindered. However, when used in appropriate concentrations with leucine, the combination of amino acids produced an enhanced performance regardless of the presence of glycine and/or alanine, yielding significantly modified particle properties. The results from the DoE analyses also revealed the lack of linearity of effects for certain responses with a significant curvature in the model which would otherwise not be discovered using a trial-and-error approach.

摘要

将氨基酸和糖结合是一种已知的策略,用于制备喷雾干燥或冷冻干燥生物分子粉末制剂。先前已经证明了氨基酸亮氨酸在增强喷雾干燥粉末性能方面的作用,但对可能提供多种益处的几种成分的相互作用影响了解较少。使用 3 因子 2 水平(2(3))析因设计来研究亮氨酸、甘氨酸和丙氨酸在甘露醇基干粉制剂中对粒径、气溶胶化、发射剂量和内聚性的影响。还对实验设计(DoE)试验进行了包括扫描电子显微镜和 X 射线粉末衍射在内的其他定性测试。结果表明,尽管甘氨酸和丙氨酸在结构上与亮氨酸有关,但它们并不能达到类似的增强气溶胶性能的效果,而是阻碍了颗粒的形成。然而,当与亮氨酸一起使用在适当的浓度下时,无论是否存在甘氨酸和/或丙氨酸,氨基酸的组合都会产生增强的性能,从而显著改变颗粒性质。DoE 分析的结果还表明,某些响应的效应缺乏线性关系,模型中存在显著的曲率,如果不采用试错法,就无法发现这种关系。

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