Centre for Pharmaceutical Engineering Science, University of Bradford, Bradford BD7 1DP, UK.
Centre for Pharmaceutical Engineering Science, University of Bradford, Bradford BD7 1DP, UK.
Int J Pharm. 2012 Apr 15;426(1-2):15-20. doi: 10.1016/j.ijpharm.2011.12.033. Epub 2012 Jan 17.
The purpose of this work was to explore NIR spectroscopy as a PAT tool to monitor the formation of ibuprofen and nicotinamide cocrystals during extrusion based solvent free continuous cocrystallization (SFCC). Drug and co-former were gravimetrically fed into a heated co-rotating twin screw extruder to form cocrystals. Real-time process monitoring was performed using a high temperature NIR probe in the extruder die to assess cocrystal content and subsequently compared to off-line powder X-ray diffraction measurements. The effect of processing variables, such as temperature and mixing intensity, on the extent of cocrystal formation was investigated. NIR spectroscopy was sensitive to cocrystal formation with the appearance of new peaks and peak shifts, particularly in the 4800-5200 cm(-1) wave-number region. PXRD confirmed an increased conversion of the mixture into cocrystal with increase in barrel temperature and screw mixing intensity. A decrease in screw rotation speed also provided improved cocrystal yield due to the material experiencing longer residence times within the process. A partial least squares analysis in this region of NIR spectrum correlated well with PXRD data, providing a best fit with cocrystal conversion when a limited range of process conditions were considered, for example a single set temperature. The study suggests that NIR spectroscopy could be used to monitor cocrystal purity on an industrial scale using this continuous, solvent-free process.
这项工作的目的是探索近红外(NIR)光谱作为一种 PAT 工具,用于监测在基于挤出的无溶剂连续共结晶(SFCC)过程中布洛芬和烟酰胺共晶形成的情况。药物和共晶形成剂通过重量进料到加热的同向旋转双螺杆挤出机中以形成共晶。使用高温 NIR 探头在挤出机模头中进行实时过程监测,以评估共晶含量,并随后与离线粉末 X 射线衍射测量进行比较。研究了加工变量(如温度和混合强度)对共晶形成程度的影响。NIR 光谱对共晶形成很敏感,出现了新的峰和峰位移,特别是在 4800-5200cm(-1)波数区域。PXRD 证实,随着筒体温 度和螺杆混合强度的增加,混合物向共晶的转化率增加。由于物料在工艺中的停留时间更长,降低螺杆转速也可提高共晶产率。在 NIR 光谱的这一区域进行偏最小二乘分析与 PXRD 数据相关性很好,当考虑有限的工艺条件范围时,例如单一设定温度,与共晶转化率的拟合度最佳。该研究表明,NIR 光谱可用于使用这种连续无溶剂工艺在工业规模上监测共晶纯度。