Kim Minjung, Chung Hoeil, Woo Youngah, Kemper Mark
Department of Chemistry, Hanyang University, Seoul 133-791, Republic of Korea.
Anal Chim Acta. 2006 Oct 10;579(2):209-16. doi: 10.1016/j.aca.2006.07.036. Epub 2006 Jul 25.
A novel and reliable Raman collection system for the non-destructive analysis of pharmaceutical tablets has been proposed. The main idea was to develop and utilize the wide area illumination (WAI) scheme for Raman collection to cover a large surface area (coverage area: 28.3mm2) of solid tablet to dramatically improve the reliability in sample representation and the reproducibility of sampling due to less sensitivity of sample placement with regard to the focal plane. Simultaneously, the effective and synchronous standard configuration using isobutyric anhydride was harmonized with the WAI scheme to correct the problematic variation of Raman intensity from the change of laser power. To verify the quantitative performance of the proposed scheme, the compositional analysis of active ingredient in naproxen tablet has been performed. The average sample composition was successfully represented by using the WAI scheme compared to the conventional scheme with a much smaller illumination area. After the intensity correction using the non-overlapping peak of isobutyric anhydride standard and area normalization, a partial least squares (PLS) model was developed using an optimized spectral range and the concentrations of naproxen in tablets were accurately predicted. The prediction accuracy was not sensitive to changes in laser power or tablet position within +/-2mm. Additionally, the prediction accuracy was repeatable without systematic drift or need for re-calibration.
已提出一种用于药物片剂无损分析的新型可靠拉曼采集系统。主要思路是开发并利用宽区域照明(WAI)方案进行拉曼采集,以覆盖固体片剂的大面积(覆盖面积:28.3mm²),由于样品放置相对于焦平面的敏感性较低,从而显著提高样品代表性的可靠性和采样的可重复性。同时,将使用异丁酸酐的有效且同步的标准配置与WAI方案相协调,以校正因激光功率变化导致的拉曼强度的问题性变化。为验证所提出方案的定量性能,已对萘普生片剂中的活性成分进行了成分分析。与具有小得多照明面积的传统方案相比,使用WAI方案成功地表示了平均样品组成。在使用异丁酸酐标准的非重叠峰进行强度校正和面积归一化后,使用优化的光谱范围建立了偏最小二乘(PLS)模型,并准确预测了片剂中萘普生的浓度。预测准确性对激光功率或片剂位置在±2mm范围内的变化不敏感。此外,预测准确性是可重复的,无需系统漂移或重新校准。