Faculty of Pharmacy, University of Ljubljana, Aškerčeva 7, SI-1000 Ljubljana, Slovenia.
Phytochem Anal. 2011 Nov-Dec;22(6):541-6. doi: 10.1002/pca.1315. Epub 2011 Apr 4.
Quality control of dried plant material in assessments of suitability of herbal medicinal products is of extreme importance. Commonly used procedures for identification of species are time consuming and expensive. The development of multivariate statistical methods has enabled application of vibrational spectroscopy for establishing plant species membership.
To determine which infrared spectroscopy mode gives most informative spectra for plant species identification.
Different modes of infrared spectroscopy were applied for investigation of differences among Epilobium and Hypericum species: diffuse reflectance (DR), attenuated total reflectance (ATR), direct transmission of whole leaves and KBr tablet transmission with comminuted leaves. The same chemometrical methods were applied to all spectra. The informative wave numbers were chosen by one-way analysis of variance. Afterwards the colinearity was reduced with principal component analysis. In the final step the species identification was determined with discriminant analysis.
Transmission and diffuse reflectance mode did not give satisfactory results. Best results for discrimination among Epilobium species were obtained with ATR mode (98%), while best results for Hypericum species were obtained with KBr transmission mode (97%). This might be explained by the morphological properties of the two genera. Epilobium species differ in distribution and morphology of trichomes on the surface of the leaves. Hypericum species differ in structures and secondary metabolites in the interior of the leaves.
For best results in using infrared spectroscopy for plant species identification in quality control, the morphological properties of plant material should be taken into consideration.
在评估草药药物适用性时,对干燥植物材料进行质量控制是至关重要的。常用于鉴定物种的方法既耗时又昂贵。多变量统计方法的发展使振动光谱技术得以应用,以确定植物物种的归属。
确定哪种红外光谱模式最能提供有关植物物种鉴定的信息丰富的光谱。
不同的红外光谱模式用于研究柳叶菜属和金丝桃属物种之间的差异:漫反射(DR)、衰减全反射(ATR)、整片叶子的直接透射和粉碎叶子的 KBr 压片透射。所有光谱均应用相同的化学计量学方法。通过单因素方差分析选择信息丰富的波数。然后通过主成分分析减少共线性。最后,用判别分析确定物种鉴定。
透射和漫反射模式没有给出令人满意的结果。ATR 模式对柳叶菜属物种的区分效果最好(98%),而 KBr 透射模式对金丝桃属物种的区分效果最好(97%)。这可能与这两个属的形态特征有关。柳叶菜属的物种在叶片表面的毛状体分布和形态上有所不同。金丝桃属的物种在叶片内部的结构和次生代谢物上有所不同。
为了在质量控制中使用红外光谱进行植物物种鉴定获得最佳结果,应考虑植物材料的形态特征。