Design of Experiments (DoE)-based approach for improvement of dry mixing processes in the production of low-dose Alprazolam tablets using Raman spectroscopy for content uniformity monitoring

Q4 Pharmacology, Toxicology and Pharmaceutics Arhiv za Farmaciju Pub Date : 2023-01-01 DOI:10.5937/arhfarm73-41376
Liljana Makraduli, P. Makreski, Filip Makraduli, Irena Slaveska-Spirevska, Tanja Bakovska-Stoimenova, Elena Lazarevska-Todevska, M. Piponski, Maja Anevska, M. Glavaš-Dodov, Maja Simonoska-Crcarevska, K. Mladenovska, K. Goracinova, Nikola Geškovski
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Abstract

A low-dose tablet formulation, containing a potent Benzodiazepine derivative Alprazolam was developed, considering the achievement of appropriate content uniformity of the active substance in powder blends and tablets as a major challenge. Two different types of lactose monohydrate (Tablettose 80 and Granulac 200) and two different types of dry mixing processes (high-shear mixing and "in bulk" mixing) were employed. To evaluate the influence of the variables (mixing speed, mixing time, filling level of the high-shear and cube mixer, lactose monohydrate type) and their interactions upon the response (content uniformity of Alprazolam in the powder blends), a Factorial 2 4 design (with 4 factors at 2 levels in 1 block) was generated for each type of mixer. For high-shear dry mixing the Response Surface, D-optimal Factorial 2 4 design (with 2 replications and 31 experiments) was used, while for the "in bulk" dry mixing the Response Surface, Central Composite Factorial 2 4 design (with 34 experiments) was used. The process parameters for the high-shear mixer were varied within the following ranges: filling level of 70-100%, impeller mixing speed of 50-300 rpm and mixing time of 2-10 minutes. For the cube mixer the following process parameter ranges were employed: filling level of 30-60%, mixing speed of 20-390 rpm and mixing time of 2-10 minutes. Raman spectroscopy in conjunction with a validated Partial Least Square (PLS) regression model was used as a Process Analytical Technology (PAT) tool for Alprazolam content determination and content uniformity monitoring. The DoE model was further employed to optimize the powder blending process in regard to the achievement of appropriate Alprazolam content uniformity using high-shear mixing and Tabletosse 80 as filler. The desirability function revealed that the following process parameters: a mixing time of 2 minutes, a mixing speed of 300 rpm and a 70% filling level of the mixer would produce powder blends with the lowest variability in Alprazolam content. The three independent lab batches of low-dose Alprazolam tablets, produced with high-shear mixing using these process parameters, conformed to the requirements of the European Pharmacopoeia for content (assay) of Alprazolam and uniformity of the dosage units.
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基于实验设计的改进低剂量阿普唑仑片生产中干混工艺的方法,利用拉曼光谱进行含量均匀性监测
考虑到粉末混合物和片剂中活性物质的适当含量均匀性是一个主要挑战,开发了一种含有强效苯二氮卓衍生物阿普唑仑的低剂量片剂配方。采用两种不同类型的一水乳糖(Tablettose 80和Granulac 200)和两种不同类型的干混合工艺(高剪切混合和散装混合)。为了评价各变量(混合速度、混合时间、高剪切和立方体混合器的填充水平、一水乳糖类型)及其相互作用对响应(混合粉中阿普唑仑的含量均匀性)的影响,对每种混合器进行了析因24设计(1块中2个水平有4个因素)。对于高剪切干混合,响应面采用d -最优析因24设计(2个重复,31个试验),而对于“散装”干混合,响应面采用中心复合析因24设计(34个试验)。高剪切混合器的工艺参数为:填充量70 ~ 100%,叶轮搅拌转速50 ~ 300 rpm,搅拌时间2 ~ 10 min。对于立方体混合器,采用以下工艺参数范围:填充量30-60%,混合速度20-390 rpm,混合时间2-10分钟。拉曼光谱结合验证的偏最小二乘(PLS)回归模型作为过程分析技术(PAT)工具,用于阿普唑仑含量测定和含量均匀性监测。采用DoE模型对高剪切混合、Tabletosse 80为填料的阿普唑仑的掺混工艺进行优化,以达到合适的含量均匀性。期望函数表明,以下工艺参数:混合时间为2分钟,混合速度为300转/分,混合器填充量为70%,将产生阿普唑仑含量变化最小的粉末混合物。使用这些工艺参数进行高剪切混合生产的三个独立实验室批次的低剂量阿普唑仑片符合欧洲药典对阿普唑仑含量(测定)和剂量单位均匀性的要求。
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来源期刊
Arhiv za Farmaciju
Arhiv za Farmaciju Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
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0.00%
发文量
19
审稿时长
12 weeks
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