Madamba M Cecilia, Mullett Wayne M, Debnath Smita, Kwong Elizabeth
Merck Frosst Canada Ltd, Pharmaceutical Research and Development, 16711 TransCanada Highway, Kirkland, QC, Canada.
AAPS PharmSciTech. 2007 Dec 14;8(4):E103. doi: 10.1208/pt0804103.
Laser-induced breakdown spectroscopy (LIBS) was evaluated as an early phase process analytical technology (PAT) tool for the rapid characterization of pharmaceutical tablet coatings. Measurement of coating thickness, uniformity, and photodegradation-predictive potential of the technique were evaluated. Model formulation tablets were coated with varying amounts (2%-4% wt/wt) of red and yellow Opadry II, and a pulsed laser was used to sample at multiple sites across the tablet face. LIBS was able to successfully detect the emissions of Fe and Ti in the coated samples, and a proportional increase in signal with coating thickness was observed. Batch-to-batch variability in the coating procedure was also easily monitored by LIBS. The coating thickness was non-uniform across the tablet surface with higher thickness at the edges, likely due to the concave shape of the tablet. Film coating levels and color of the film had been subjected to photostability studies according to the International Conference on Harmonisation (ICH) guideline to determine effectiveness of the film coats. LIBS measurements of coating thickness provided a good correlation (R (2) > 0.99) to photodegradation as measured by high-performance liquid chromatography (HPLC). Last, the concentration of Fe in the coating was varied and monitored by LIBS. Increasing photostability was observed with increasing levels of ferric oxide, providing a new understanding of the photoprotection mechanism in the coated formulation. Determination of levels of ferric oxide and coating thickness by LIBS demonstrated its utility as a good PAT tool for the determination of photoprotection of the drug, thereby enabling facile optimization of the coating process.
激光诱导击穿光谱法(LIBS)被评估为一种早期过程分析技术(PAT)工具,用于快速表征药物片剂包衣。评估了该技术的包衣厚度、均匀性以及光降解预测潜力。用不同量(2%-4%重量/重量)的红色和黄色欧巴代II对模型配方片剂进行包衣,并用脉冲激光在片剂表面的多个位置进行采样。LIBS能够成功检测包衣样品中Fe和Ti的发射,并观察到信号随包衣厚度成比例增加。LIBS还能轻松监测包衣过程中批次间的变异性。片剂表面的包衣厚度不均匀,边缘处厚度较高,这可能是由于片剂的凹形所致。根据国际协调会议(ICH)指南,对薄膜包衣水平和薄膜颜色进行了光稳定性研究,以确定薄膜包衣的有效性。通过高性能液相色谱法(HPLC)测量,LIBS对包衣厚度的测量与光降解具有良好的相关性(R²>0.99)。最后,通过LIBS改变并监测包衣中Fe的浓度。随着氧化铁含量的增加,观察到光稳定性增强,这为包衣制剂中的光保护机制提供了新的认识。通过LIBS测定氧化铁水平和包衣厚度,证明了其作为一种良好的PAT工具用于测定药物光保护的实用性,从而能够轻松优化包衣过程。