Bristol-Myers Squibb Company, New Brunswick, NJ 08903, USA.
Appl Spectrosc. 2012 Aug;66(8):892-902. doi: 10.1366/12-06677. Epub 2012 Jul 13.
The benefits of Raman signal enhancement and improved measurement precision are demonstrated using 180° backscattering Fourier transform Raman (FT-Raman) spectroscopy from drilled cylindrical-conical holes within pharmaceutical tablet cores. Multiple scattering of the incident laser light within the holes results in an increased Raman signal due to the larger Raman sampling volume. This is important for overcoming typical sub-sampling issues encountered when employing FT-Raman backscattering of heterogeneous pharmaceutical tablets. Hole depth and diameter were found to be important experimental parameters and were optimized to yield the greatest signal enhancement. The FT-Raman spectra collected using backscattering from cylindrical-conical holes is compared to typical 180° backscattering from flat surfaces using tablet cores of Excedrin® and Vivarin®. Raman chemical images are used to establish a representative sampling area. We observe a three- to five-fold increase in the Raman intensity and a two-fold improvement in the measurement precision when sampling from cylindrical-conical holes rather than classic backscattering from flat tablet cores. Self-absorption effects on analyte band ratios are negligible in the fingerprint region but are more significant at the higher near-infrared (NIR) absorbances found in the C-H/O-H/-N-H stretching region. The sampling technique will facilitate developing quantitative FT-Raman methods for application to pharmaceutical tablets using the fingerprint spectral region.
180°背散射傅里叶变换拉曼(FT-Raman)光谱法在药物片剂芯部的钻制的圆柱形-圆锥形孔中得到应用,展示了拉曼信号增强和提高测量精度的好处。由于较大的拉曼采样体积,激光光在孔内的多次散射导致拉曼信号增强。这对于克服采用 FT-Raman 背散射对非均相药物片剂时遇到的典型欠采样问题非常重要。发现孔的深度和直径是重要的实验参数,并对其进行了优化,以获得最大的信号增强。使用圆柱形-圆锥形孔的背散射收集的 FT-Raman 光谱与使用 Excedrin®和 Vivarin®片剂芯的典型 180°背散射进行了比较。拉曼化学图像用于建立代表性的采样区域。与从经典的平面片剂芯进行背散射相比,从圆柱形-圆锥形孔进行采样时,我们观察到拉曼强度增加了三到五倍,测量精度提高了两倍。在指纹区域,分析物带比的自吸收效应可以忽略不计,但在近红外(NIR)吸收较高的 C-H/O-H/-N-H 伸缩区域更为显著。该采样技术将有助于开发用于药物片剂的定量 FT-Raman 方法,应用于指纹光谱区域。