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开发一种小规模喷雾干燥方法用于早期药物开发中无定形固体分散体(ASD)的筛选。

Development of a small-scale spray-drying approach for amorphous solid dispersions (ASDs) screening in early drug development.

机构信息

a School of Pharmacy and Pharmaceutical Sciences, Faculty of Health Sciences and Wellbeing , University of Sunderland , Sunderland , UK.

b UCB Pharma S.A., Product Development , Braine l'Alleud , Belgium.

出版信息

Pharm Dev Technol. 2019 Jun;24(5):560-574. doi: 10.1080/10837450.2018.1534861. Epub 2018 Nov 6.

Abstract

The present study details the development of a small-scale spray-drying approach for the routine screening of amorphous solid dispersions (ASDs). This strategy aims to overcome the limitations of standard screening methodologies like solvent casting and quench cooling to predict drug-polymer miscibility of spray-dried solid dispersions (SDSDs) and therefore to guarantee appropriate carrier and drug-loading (DL) selection. A DoE approach was conducted to optimize process conditions of ProCept 4M8-TriX spray-drying to maximize the yield from a 100 mg batch of Itraconazole/HPMCAS-LF and Itraconazole/Soluplus 40:60 (w/w). Optimized process parameters include: inlet temperature, pump speed, drying and atomizing airflows. Identified process conditions derived from the DoE analysis were further (i) tested with Itraconazole, Naproxen and seven polymers, (ii) adapted for small cyclone use, (iii) downscaled to 20 mg batch production. Drug-polymer miscibility was systematically characterized using modulated differential scanning calorimetry (mDSC). Spray-drying was identified as a well-suited screening approach: mean yield of 10.1 to 40.6% and 51.1 to 81.0% were obtained for 20 and 100 mg ASD productions, respectively. Additionally, this work demonstrates the interest to move beyond conventional screening approaches and integrate spray-drying during screening phases so that a greater prediction accuracy in terms of SDSDs miscibility and performance can be obtained.

摘要

本研究详细介绍了一种小规模喷雾干燥方法的开发,用于常规筛选无定形固体分散体(ASD)。该策略旨在克服标准筛选方法(如溶剂浇铸和淬火冷却)的局限性,以预测喷雾干燥固体分散体(SDSD)中药物-聚合物的混溶性,从而保证适当的载体和载药量(DL)选择。采用设计实验(DoE)方法优化 ProCept 4M8-TriX 喷雾干燥的工艺条件,以最大限度地提高 100mg 伊曲康唑/HPMCAS-LF 和伊曲康唑/Soluplus 40:60(w/w)的产率。优化的工艺参数包括:入口温度、泵速、干燥和雾化空气流量。从 DoE 分析中得出的确定的工艺条件进一步(i)用伊曲康唑、萘普生和七种聚合物进行了测试,(ii)适应了小型旋风器的使用,(iii)缩小到 20mg 批次生产。采用调制差示扫描量热法(mDSC)系统地对药物-聚合物的混溶性进行了表征。喷雾干燥被确定为一种合适的筛选方法:对于 20 和 100mg ASD 的生产,平均收率分别为 10.1%至 40.6%和 51.1%至 81.0%。此外,这项工作表明有兴趣超越传统的筛选方法,并在筛选阶段整合喷雾干燥,以便在 SDSD 的混溶性和性能方面获得更高的预测准确性。

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