Department of Pharmacognosy and Natural Products Chemistry, Faculty of Pharmacy, National and Kapodistrian University of Athens, Panepistimiopolis Zografou, 15771 Athens, Greece.
Department of Pharmacognosy and Natural Products Chemistry, Faculty of Pharmacy, National and Kapodistrian University of Athens, Panepistimiopolis Zografou, 15771 Athens, Greece.
Food Chem. 2019 Aug 1;288:1-7. doi: 10.1016/j.foodchem.2019.02.109. Epub 2019 Mar 2.
Sesamin and sesamolin constitute the main bioactive secondary metabolites of sesame seeds (Sesamum indicum L., Pedaliaceae). In the present work, a rapid HPTLC-based methodology was developed in compliance with the requirements of the European Pharmacopoeia for the quantification of these two lignans in sesame seeds. A comparative study was simultaneously performed with HPLC-PDA for assessing the sesamin and sesamolin content of diverse samples. Both methods were validated and the results were subsequently subjected to statistical analysis in order to compare their performance as well as to investigate possible correlations. The methods were shown to be adequately correlated in terms of performance, as revealed by Pearson's rank correlation coefficients (>0.99 for sesamin and >0.98 for sesamolin) and Bland-Altman analysis (relative method bias 0.06-0.21, SD of bias 0.05-0.07). HPTLC densitometry could thereby serve as a valid and reliable tool for the rapid determination of the major lignans in sesame seed samples.
芝麻素和芝麻林可构成芝麻(芝麻,芝麻科)的主要生物活性次生代谢物。在本工作中,开发了一种基于 HPTLC 的快速方法,该方法符合欧洲药典对芝麻中这两种木质素的定量要求。同时,用 HPLC-PDA 对不同样品中的芝麻素和芝麻林含量进行了比较研究。对两种方法进行了验证,并对结果进行了统计学分析,以比较它们的性能以及研究可能的相关性。结果表明,两种方法的性能具有良好的相关性,皮尔逊等级相关系数(芝麻素>0.99,芝麻林>0.98)和 Bland-Altman 分析(相对方法偏差 0.06-0.21,偏差标准差 0.05-0.07)表明了这一点。因此,HPTLC 密度法可作为快速测定芝麻种子样品中主要木质素的有效可靠工具。