Ferreres F, Gil-Izquierdo A, Andrade P B, Valentão P, Tomás-Barberán F A
Research Group on Quality, Safety and Bioactivity of Plant Foods, Department of Food Science and Technology, CEBAS (CSIC), P.O. Box 164, 30100 Campus University Espinardo, Murcia, Spain.
J Chromatogr A. 2007 Aug 17;1161(1-2):214-23. doi: 10.1016/j.chroma.2007.05.103. Epub 2007 Jun 12.
Fifty three O-glycosyl-C-glycosyl flavones with O-glycosylation on phenolic hydroxyl or on the C-glycosyl residue or combination of both forms have been studied by liquid chromatography-UV diode array detection-electrospray ionisation mass spectrometry ion trap in the negative mode. The study of the relative abundance of the main ions from the MS preferential fragmentation on -MS2 and/or -MS3 events allows the differentiation of the position of the O-glycosylation, either on phenolic hydroxyl or on the sugar moiety of C-glycosylation. In addition, it is possible to discriminate between O-glycosylation at 2'' and at 6'' positions. The occurrence of an abundant ion Y(0)(-) ((M-H)-132/-146/-162, mono-O-pentosyl/rhamnosyl/hexosyl-C-glycosyl derivatives) after -MS2 fragmentation characterizes the O-glycosylation on phenolic hydroxyls. The preferential fragmentation leading to a relevant Z(1)(-) (Y(1)-18) fragment is characteristic of 2''-O-glycosyl-C-glycosyl derivatives. The 6''-O-glycosyl-C-glycosyl derivatives are characterized by (0,2)X(0)(-), which is generated by a global loss of the sugar moiety from the O-glycosylation at 6'' and the glycosidic fraction that involves the carbons 6''-3'' of the C-glycosyl residue ((M-H)-162-120, in the case of 6''-O-hexosyl-C-hexosyl derivatives). Regarding the combined O-glycosylated compounds (both on phenolic hydroxyl and on sugar moiety at C-glycosylation), the main fragmentation on -MS2 events produces a Y(0)(-) characterizing the O-glycosylation on the phenolic hydroxyl, and the -MS3(M-H)-->Y(0) fragmentation of the O-glycosylation on the C-glycosyl residue.
采用液相色谱 - 紫外二极管阵列检测 - 电喷雾电离质谱离子阱负模式,对53种在酚羟基、C - 糖基残基上或两者结合形式上具有O - 糖基化的O - 糖基 - C - 糖基黄酮进行了研究。通过对质谱(MS)在二级质谱(MS2)和/或三级质谱(MS3)事件中优先裂解产生的主要离子相对丰度的研究,可以区分O - 糖基化的位置,无论是在酚羟基上还是在C - 糖基化的糖部分上。此外,还可以区分2''位和6''位的O - 糖基化。在MS2裂解后出现丰富的离子Y(0)(-)((M - H) - 132/-146/-162,单 - O - 戊糖基/鼠李糖基/己糖基 - C - 糖基衍生物),这是酚羟基上O - 糖基化的特征。优先裂解产生相关的Z(1)(-)(Y(1) - 18)片段是2'' - O - 糖基 - C - 糖基衍生物的特征。6'' - O - 糖基 - C - 糖基衍生物的特征是(0,2)X(0)(-),它是由6''位O - 糖基化的糖部分以及涉及C - 糖基残基6'' - 3''碳原子的糖苷部分整体丢失产生的(对于6'' - O - 己糖基 - C - 己糖基衍生物,为(M - H) - 162 - 120)。对于组合的O - 糖基化化合物(酚羟基和C - 糖基化的糖部分上均有O - 糖基化),MS2事件中的主要裂解产生表征酚羟基上O - 糖基化的Y(0)(-),以及C - 糖基残基上O - 糖基化的MS3(M - H)-->Y(0)裂解。