Markl Daniel, Hannesschläger Günther, Sacher Stephan, Leitner Michael, Buchsbaum Andreas, Pescod Russel, Baele Thomas, Khinast Johannes G
Research Center Pharmaceutical Engineering GmbH, Graz, Austria.
Research Center for Non-Destructive Testing GmbH, Linz, Austria.
J Pharm Sci. 2015 Aug;104(8):2531-40. doi: 10.1002/jps.24531. Epub 2015 Jun 4.
This work demonstrates a new in-line measurement technique for monitoring the coating growth of randomly moving tablets in a pan coating process. In-line quality control is performed by an optical coherence tomography (OCT) sensor allowing nondestructive and contact-free acquisition of cross-section images of film coatings in real time. The coating thickness can be determined directly from these OCT images and no chemometric calibration models are required for quantification. Coating thickness measurements are extracted from the images by a fully automated algorithm. Results of the in-line measurements are validated using off-line OCT images, thickness calculations from tablet dimension measurements, and weight gain measurements. Validation measurements are performed on sample tablets periodically removed from the process during production. Reproducibility of the results is demonstrated by three batches produced under the same process conditions. OCT enables a multiple direct measurement of the coating thickness on individual tablets rather than providing the average coating thickness of a large number of tablets. This gives substantially more information about the coating quality, that is, intra- and intertablet coating variability, than standard quality control methods.
这项工作展示了一种新的在线测量技术,用于监测锅包衣过程中随机移动片剂的包衣生长情况。通过光学相干断层扫描(OCT)传感器进行在线质量控制,可实时无损且非接触地获取薄膜包衣的横截面图像。包衣厚度可直接从这些OCT图像中确定,无需化学计量校准模型进行定量分析。包衣厚度测量值由全自动算法从图像中提取。在线测量结果通过离线OCT图像、片剂尺寸测量的厚度计算以及重量增加测量进行验证。验证测量在生产过程中定期从工艺中取出的样品片剂上进行。在相同工艺条件下生产的三批产品证明了结果的可重复性。OCT能够对单个片剂的包衣厚度进行多次直接测量,而不是提供大量片剂的平均包衣厚度。与标准质量控制方法相比,这能提供关于包衣质量的更多信息,即片剂内和片剂间的包衣变异性。