Food Science and Technology Program, Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore 117543, Singapore.
Molecules. 2013 Feb 18;18(2):2255-65. doi: 10.3390/molecules18022255.
Characterization of polyphenolic compounds in the stems of P. multiflorum was conducted using HPLC, high resolution LC-MS and LC-MSn. Proanthocyanidins in particular were isolated in 4.8% yield using solvent extraction followed by Sephadex LH-20 fractionation. HPLC analysis using a diol column revealed oligomers (from dimer to nonamer) as minor components, with (epi)catechin monomeric units predominating, and oligomers with higher degree of polymerization being dominant. Thiolysis treatment of the proanthocyanidins using mercaptoacetic acid produced thioether derivatives of (epi)catechin as the major product and a mean value of the degree of polymerization of 32.6 was estimated from the ratio of terminal and extension units of the (epi)catechin. The isolated proanthocyanidins were shown to strongly inhibit α-amylase with an acarbose equivalence (AE) value of 1,954.7 µmol AE/g and inhibit α-glucosidase with an AE value of 211.1 µmol AE/g.
采用高效液相色谱(HPLC)、高分辨率 LC-MS 和 LC-MSn 对何首乌茎中的多酚化合物进行了表征。采用溶剂萃取和 Sephadex LH-20 分级分离,以 4.8%的收率分离出原花青素。使用二醇柱进行 HPLC 分析显示,低聚物(二聚体到九聚体)为次要成分,以(表)儿茶素单体单元为主,聚合度较高的低聚物为主。用巯基乙酸对原花青素进行硫解处理,得到(表)儿茶素的硫醚衍生物作为主要产物,根据(表)儿茶素末端和延伸单元的比例,估计聚合度的平均值为 32.6。分离出的原花青素对α-淀粉酶具有很强的抑制作用,阿卡波糖当量(AE)值为 1,954.7 µmol AE/g,对α-葡萄糖苷酶的抑制作用的 AE 值为 211.1 µmol AE/g。