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A particle technology approach toward designing dry-powder inhaler formulations for personalized medicine in respiratory diseases

机译:一种在呼吸系统疾病中设计干粉吸入器配方的粒子技术方法

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摘要

Compared with oral and parenteral formulations, inhaled formulations are attractive because of their great benefit and potential to enhance therapeutic effects of medications. Among the available inhaled formulations, powders used with dry-powder inhalers (DPIs) have become a preferred option because of their many advantages over other inhaled formulations. Additionally, a powder technological approach is required and available for sophisticated design of DPI formulations. To provide appropriate treatment using a DPI formulation, inhaled particles containing drugs should be delivered to the appropriate sites in the lungs of individual patients. It is indispensable that the design of DPI formulations specify particle properties suitable for a specific disease and the appropriate positions in the lungs to which the inhaled particles must be delivered. This article focuses on the current particle technological approach toward designing DPI formulations and numerical simulation analysis of behavior and deposition of inhaled particles in the lungs. As a future perspective from the viewpoint of pharmaceutical particle technology, a combination of experimental and simulation approaches is expected to improve the ability to obtain maximum lung delivery as well as target the site of deposition in the lungs of individual patients. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan.
机译:与口腔和肠胃外制剂相比,由于它们具有很大的益处和增强药物治疗效果的益处,吸入的制剂具有吸引力。在可用的吸入制剂中,与干粉吸入器(DPI)一起使用的粉末已成为优选的选择,因为它们与其他吸入配方的许多优点。另外,需要一种粉末技术方法,可用于DPI配方的复杂设计。为了使用DPI制剂提供适当的处理,含有吸入的含有药物的颗粒应递送到个体患者肺部的适当部位。 DPI配方的设计指定适于特定疾病的颗粒性质和吸入颗粒必须递送的肺部的适当位置。本文重点介绍了设计DPI配方的当前粒子技术方法,以及肺中吸入颗粒的行为和沉积的数值模拟分析。作为从药物粒子技术的观点来看,预计实验和模拟方法的组合将提高获得最大肺部递送的能力以及靶向个体患者肺部的沉积部位。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。

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