Department of Biopharmaceutics and Pharmaceutical Technology, Saarland University, Campus A4.1, 66123 Saarbruecken, Germany.
AAPS J. 2013 Apr;15(2):505-10. doi: 10.1208/s12248-013-9457-7. Epub 2013 Jan 29.
Confocal Raman microscopy is an analytical technique with a steadily increasing impact in the field of pharmaceutics as the instrumental setup allows for nondestructive visualization of component distribution within drug delivery systems. Here, the attention is mainly focused on classic solid carrier systems like tablets, pellets, or extrudates. Due to the opacity of these systems, Raman analysis is restricted either to exterior surfaces or cross sections. As Raman spectra are only recorded from one focal plane at a time, the sample is usually altered to create a smooth and even surface. However, this manipulation can lead to misinterpretation of the analytical results. Here, we present a trendsetting approach to overcome these analytical pitfalls with a combination of confocal Raman microscopy and optical profilometry. By acquiring a topography profile of the sample area of interest prior to Raman spectroscopy, the profile height information allowed to level the focal plane to the sample surface for each spectrum acquisition. We first demonstrated the basic principle of this complementary approach in a case study using a tilted silica wafer. In a second step, we successfully adapted the two techniques to investigate an extrudate and a lyophilisate as two exemplary solid drug carrier systems. Component distribution analysis with the novel analytical approach was neither hampered by the curvature of the cylindrical extrudate nor the highly structured surface of the lyophilisate. Therefore, the combined analytical approach bears a great potential to be implemented in diversified fields of pharmaceutical sciences.
共聚焦拉曼显微镜是一种分析技术,在药剂学领域的影响力不断增加,因为仪器设置允许对药物传递系统中的成分分布进行非破坏性可视化。在这里,主要关注的是经典的固体载体系统,如片剂、丸剂或挤出物。由于这些系统不透明,拉曼分析仅限于外表面或横截面。由于拉曼光谱一次只能记录一个焦平面的光谱,因此通常会对样品进行处理以创建光滑均匀的表面。然而,这种处理可能会导致对分析结果的误解。在这里,我们提出了一种开创性的方法,通过共聚焦拉曼显微镜和光学轮廓术相结合来克服这些分析上的缺陷。在进行拉曼光谱之前,先获取感兴趣的样品区域的形貌轮廓,每个光谱采集时,轮廓高度信息将焦平面调整到样品表面。我们首先使用倾斜的硅片在案例研究中证明了这种互补方法的基本原理。在第二步中,我们成功地将这两种技术应用于研究挤出物和冻干物这两种典型的固体药物载体系统。使用新的分析方法进行成分分布分析,既不受圆柱形挤出物的曲率影响,也不受冻干物高度结构化表面的影响。因此,这种组合分析方法具有在药物科学的各个领域中得到广泛应用的巨大潜力。