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[用于药品生产的无溶剂制药技术的开发]

[Development of Solventless Pharmaceutical Technique for Manufacture of Pharmaceuticals].

作者信息

Kondo Keita

机构信息

Department of Industrial Pharmacy, Faculty of Pharmacy, Meijo University.

出版信息

Yakugaku Zasshi. 2024;144(10):919-930. doi: 10.1248/yakushi.24-00123.

Abstract

The aim of our study was to develop a solventless drug pelletization and polymer coating technique for pharmaceutical manufacturing. This review describes a dry coating technique using a mechanical powder processor and a V-shaped blender to produce coated pellets or tablets by mechanically mixing polymer particles and core materials (such as drug pellets and uncoated tablets) without the need for a solvent. First, aqueous latexes comprising colloidal polymethacrylates and ethylcellulose were solidified by freeze drying to produce polymer particles for the dry coating process. These particles and the cores were then subjected to mechanical powder processing or V-shaped blending to provide coated formulations with controlled-release characteristics. Polymer coating was achieved by using agglomerates comprising assembled colloidal polymer. The agglomerated polymer was easily pulverized during the mixing treatments due to its loose structure (the lack of close contacts between the colloidal particles), and the resulting fine polymer with high adhesiveness was deposited on the cores. Colloidal polymer dispersed in aqueous latex tends to coagulate in the freeze-drying process due to condensation of the dispersion, yielding dense agglomerates with poor coating characteristics. The presence of surfactants (such as sodium lauryl sulfate) in the latex can prevent adhesion between colloidal particles in the freeze-drying process, providing loosely structured agglomerates suitable for dry coating. Dry coating with a V-shaped blender could thus be achieved with these polymer particles instead of having to use a mechanical powder processor.

摘要

我们研究的目的是开发一种用于药物制造的无溶剂药物制粒和聚合物包衣技术。本综述描述了一种干包衣技术,该技术使用机械粉末处理器和V型混合器,通过机械混合聚合物颗粒和核心材料(如药物颗粒和未包衣片剂)来生产包衣颗粒或片剂,而无需使用溶剂。首先,通过冷冻干燥使包含胶体聚甲基丙烯酸酯和乙基纤维素的水性胶乳固化,以生产用于干包衣工艺的聚合物颗粒。然后将这些颗粒和核心材料进行机械粉末处理或V型混合,以提供具有控释特性的包衣制剂。聚合物包衣是通过使用由组装的胶体聚合物组成的团聚体来实现的。团聚的聚合物由于其松散的结构(胶体颗粒之间缺乏紧密接触),在混合处理过程中很容易被粉碎,并且由此产生的具有高粘附性的细聚合物沉积在核心材料上。分散在水性胶乳中的胶体聚合物在冷冻干燥过程中由于分散体的凝聚而倾向于凝结,产生具有不良包衣特性的致密团聚体。胶乳中表面活性剂(如十二烷基硫酸钠)的存在可以防止胶体颗粒在冷冻干燥过程中相互粘附,从而提供适合干包衣的结构松散的团聚体。因此,使用这些聚合物颗粒而不是必须使用机械粉末处理器,就可以用V型混合器实现干包衣。

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