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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Investigation of Physicochemical Drug Properties to Prepare Fine Globular Granules Composed of Only Drug Substance in Fluidized Bed Rotor Granulation
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Investigation of Physicochemical Drug Properties to Prepare Fine Globular Granules Composed of Only Drug Substance in Fluidized Bed Rotor Granulation

机译:物理化学药物性质的研究制备仅在流化床转子造粒中的药物物质组成的细菌颗粒

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The effect of some drug properties (wettability and particle size distribution) on granule properties (mean particle size, particle size distribution, sphericity, and granule strength) were investigated in a high (>97%) drug-loading formulation using fluidized bed rotor granulation. Three drugs: acetaminophen (APAP); ibuprofen (IBU); and ethenzamide (ETZ) were used as model drugs based on their differences in wettability and particle size distribution. Granules with mean particle sizes of 100–200?μm and a narrow particle size distribution (PSD) could be prepared regardless of the drug used. IBU and ETZ granules showed a higher sphericity than APAP granules, while APAP and ETZ granules exhibited higher granule strength than IBU. The relationship between drug and granule properties suggested that the wettability and the PSD of the drugs were critical parameters affecting sphericity and granule strength, respectively. Furthermore, the dissolution profiles of granules prepared with poorly water-soluble drugs (IBU and ETZ) showed a rapid release (80% release in 20?min) because of the improved wettability with granulation. The present study demonstrated for the first time that fluidized bed rotor granulation can prepare high drug-loaded (>97%) globular granules with a mean particle size of less than 200?μm and the relationship between physicochemical drug properties and the properties of the granules obtained could be readily determined, indicating the potential for further application of this methodology to various drugs.
机译:在使用流化床转子造粒的高(> 97%)的药物载体制剂中,研究了一些药物性质(润湿性和粒度分布)对颗粒性质(平均粒度,粒度分布,球形和颗粒强度)的影响。三种药物:乙酰氨基酚(APAP);布洛芬(IBU);并且基于它们的润湿性和粒度分布的差异,使用乙露酰胺(Etz)作为模型药物。无论使用的药物如何,都可以制备具有100-200Ωμm和窄粒度分布(PSD)的平均粒径的颗粒。 IBU和ETZ颗粒显示比Apap颗粒更高的球形,而Apap和Etz颗粒表现出比IBU更高的颗粒强度。药物和颗粒性质之间的关系表明,药物的润湿性和PSD分别是影响球形性和颗粒强度的关键参数。此外,由于水溶性较差的药物(IBU和ETZ)制备的颗粒的溶解谱显示出快速释放(20μm20≤min的80%),因为造粒的润湿性改善。本研究首次证明了流化床转子造粒首次可以制备高药物负载(> 97%)球状颗粒,其平均粒度小于200≤μm,物理化学药物性质与颗粒性质之间的关系可以容易地确定获得的,表明可以进一步向各种药物应用这种方法的可能性。

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