Department of Industrial Pharmacy, Faculty of Pharmacy, Assiut University, Assiut, 71526, Egypt.
Department of Pharmaceutical Sciences, College of Pharmacy and Health Science, St. Johns University, Queens, New York, USA.
AAPS PharmSciTech. 2020 Jun 30;21(5):181. doi: 10.1208/s12249-020-01732-x.
Cocrystals have gained a lot of consideration regarding its superior role in enhancement of solubility and dissolution of the included API. Cocrystals could be converted to coamorphous systems via different techniques like milling and quench cooling; however, the use of spray-drying technique has not been investigated before. So, the aim of this study was to explore the effect of spray drying on the amorphization of indomethacin/nicotinamide, INDNIC, as model cocrystals. Spray-drying operating parameters were optimized using the Taguchi design of experiment for maximum powder yield and low moisture content. The obtained INDNIC spray-dried cocrystals were characterized for their degree of crystallinity, morphology, moisture content, and dissolution performance. In addition, stability study was performed at different temperature and humidity conditions. Experimental design results delineate that spray-drying inlet temperature and cocrystal concentrations as the most influential factors for maximum powder yield and low moisture content. Powder X-ray diffraction and differential scanning calorimetry studies revealed the conversion of INDNIC cocrystals to a partial coamorphous or coamorphous structure without dissociation of INDNIC molecular structure. INDNIC coamorphous powders showed a significantly higher release of IND compared with cocrystals and remain physically stable for 2 months when stored in the refrigerator.
共晶在提高包含的 API 的溶解度和溶解率方面具有重要作用,因此受到了广泛关注。共晶可以通过不同的技术转化为共无定形系统,例如研磨和淬火冷却;然而,喷雾干燥技术以前尚未被研究过。因此,本研究的目的是探索喷雾干燥对吲哚美辛/烟酰胺(INDNIC)模型共晶非晶化的影响。使用田口实验设计优化喷雾干燥操作参数,以获得最大粉末产率和低水分含量。对所得 INDNIC 喷雾干燥共晶的结晶度、形态、水分含量和溶解性能进行了表征。此外,还在不同温度和湿度条件下进行了稳定性研究。实验设计结果表明,喷雾干燥入口温度和共晶浓度是影响最大粉末产率和低水分含量的最主要因素。粉末 X 射线衍射和差示扫描量热法研究表明,INDNIC 共晶转化为部分共无定形或共无定形结构,而 INDNIC 分子结构没有解离。与共晶相比,INDNIC 共无定形粉末显示出 IND 更高的释放度,并且在冷藏条件下储存 2 个月时仍保持物理稳定性。