Petrásková Lucie, Káňová Kristýna, Biedermann David, Křen Vladimír, Valentová Kateřina
Institute of Microbiology of the Czech Academy of Sciences, Vídeňská 1083, CZ 142 20 Prague, Czech Republic.
Department of Biochemistry and Microbiology, University of Chemistry and Technology Prague, Technická 5, CZ 166 28 Prague, Czech Republic.
Foods. 2020 Jan 21;9(2):116. doi: 10.3390/foods9020116.
Herbal preparations from have been used since the fourth century BC in liver disease treatment and against numerous other pathologies. Consumption of silymarin containing drugs and food supplements continues to increase. Precise, fast, reliable, and complex determination of all components of silymarin preparations is paramount for assessing its pharmacological quality. We present here simple and fast HPLC-DAD and LC-MS analytical methods for the determination and quantification of all known silymarin components, including 2,3-dehydroflavonolignans that has not been achieved so far. The first method, using a common C18 column, allows baseline separation of previously inseparable silychristin A, B, isosilychristin, and silydianin. Moreover, this method allowed detection of three so far unknown silymarin components. In addition, the first analytical separation of enantiomers of 2,3-dehydrosilybin was achieved using a Lux 3μ Cellulose-4 chiral column, providing even more accurate description of silymarin composition. 2,3-Dehydroflavonolignans were isolated for the first time from silymarin using preparative chromatography on C18 and ASAHIPAK columns, and 2,3-dehydrosilychristin and 2,3-dehydrosilybin were for the first time conclusively confirmed by HPLC, MS, and NMR to be silymarin components. Using the optimized analytical methods, six various silymarin preparations were analyzed showing substantial differences in the composition.
自公元前4世纪以来,来自[具体来源未提及]的草药制剂就被用于治疗肝脏疾病及其他多种病症。含水飞蓟素的药物和食品补充剂的消费量持续增长。准确、快速、可靠且全面地测定水飞蓟素制剂的所有成分对于评估其药理质量至关重要。我们在此介绍简单快速的HPLC-DAD和LC-MS分析方法,用于测定和定量所有已知的水飞蓟素成分,包括迄今尚未实现的2,3 - 脱氢黄酮木脂素。第一种方法使用普通的C18柱,可对之前无法分离的水飞蓟宾A、B、异水飞蓟宾和水飞蓟宁进行基线分离。此外,该方法还检测到三种迄今未知的水飞蓟素成分。另外,使用Lux 3μ纤维素 - 4手性柱首次实现了2,3 - 脱氢水飞蓟宾对映体的分析分离,从而更准确地描述了水飞蓟素的组成。首次使用C18柱和ASAHIPAK柱通过制备色谱从水飞蓟素中分离出2,3 - 脱氢黄酮木脂素,并且首次通过HPLC、MS和NMR最终确认2,3 - 脱氢水飞蓟宾和2,3 - 脱氢水飞蓟宁是水飞蓟素的成分。使用优化后的分析方法,对六种不同的水飞蓟素制剂进行了分析,结果显示其成分存在显著差异。