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通过湿磨和喷雾干燥制备茶碱可吸入微复合颗粒:甘露醇作为共磨助剂的影响。

Preparation of theophylline inhalable microcomposite particles by wet milling and spray drying: The influence of mannitol as a co-milling agent.

机构信息

UCL School of Pharmacy, 29-39 Brunswick Square, London, WC1N 1AX, UK.

Department of Pharmaceutical Technology, Faculty of Pharmacy, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

出版信息

Int J Pharm. 2016 Nov 30;514(1):200-211. doi: 10.1016/j.ijpharm.2016.06.032.

Abstract

Inhalable theophylline particles with various amounts of mannitol were prepared by combining wet milling in isopropanol followed by spray drying. The effect of mannitol as a co-milling agent on the micromeritic properties, solid state and aerosol performance of the engineered particles was investigated. Crystal morphology modelling and geometric lattice matching calculations were employed to gain insight into the intermolecular interactions that may influence the mechanical properties of theophylline and mannitol. The addition of mannitol facilitated the size reduction of the needle-like crystals of theophylline and also their assembly in microcomposites by forming a porous structure of mannitol nanocrystals wherein theophylline particles are embedded. The microcomposites were found to be in the same crystalline state as the starting material(s) ensuring their long-term physical stability upon storage. Incorporation of mannitol resulted in microcomposite particles with smaller size, more spherical shape and increased porosity. The aerosol performance of the microcomposites was markedly enhanced compared to the spray-dried suspension of theophylline wet milled without mannitol. Overall, wet co-milling with mannitol in an organic solvent followed by spray drying may be used as a formulation approach for producing respirable particles of water-soluble drugs or drugs that are prone to crystal transformation in an aqueous environment (i.e. formation of hydrates).

摘要

采用异丙醇中湿磨结合喷雾干燥的方法制备了不同甘露醇含量的可吸入茶碱颗粒。考察了甘露醇作为共磨助剂对工程化颗粒的微粉学性质、固态和空气动力学性能的影响。通过晶体形态建模和几何格子匹配计算,深入了解可能影响茶碱和甘露醇机械性能的分子间相互作用。甘露醇的添加促进了茶碱针状晶体的粒径减小,并通过形成甘露醇纳米晶体的多孔结构,将茶碱颗粒嵌入其中,从而促进其在微复合材料中的组装。发现微复合材料与起始材料(s)处于相同的晶态,确保了其在储存过程中的长期物理稳定性。与未添加甘露醇的茶碱湿磨喷雾干燥混悬液相比,甘露醇的掺入导致微复合材料颗粒的粒径更小、球形度更高、孔隙率增加。与未添加甘露醇的茶碱湿磨喷雾干燥混悬液相比,微复合材料的空气动力学性能明显提高。总之,有机溶剂中湿共磨与甘露醇结合喷雾干燥,可能可用于制备水溶性药物或在水相环境中易发生晶体转化的药物(即水合物的形成)的可吸入颗粒。

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