Totlani Vandana M, Peterson Devin G
Department of Food Science, 327 Food Science Building, The Pennsylvania State University, University Park, Pennsylvania 16802-2504, USA.
J Agric Food Chem. 2006 Sep 20;54(19):7311-8. doi: 10.1021/jf061244r.
Recently, our group reported via labeling experiments that epicatechin in Maillard reaction aqueous glucose-glycine model systems formed adduct reaction products with C2, C3, and C4 sugar fragments. In the current study, we investigated the identity of the sugar fragment precursors responsible for adduct generation by directly comparing the liquid chromatography-mass spectrometry properties of these reported epicatechin (EC)-sugar fragments adducts with those generated from reactions consisting of only EC and well-known Maillard-generated glucose fragments (i.e., glyoxal, glycolaldehyde, methylglyoxal, glyceraldehyde, etc.). The structural properties of an EC-methylglyoxal adduct reaction product were also analyzed by NMR. The most likely precursors for the C2, C3, and C4 sugar moiety of the EC-sugar fragment adducts were identified as glyoxal, hydroxyacetone, and erythrose, respectively. 1H NMR analysis of the EC-methylglyoxal indicated that the analyte underwent rapid conformational/constitutional exchange. Using cold temperature (-25 degrees C) two-dimensional NMR analyses (heteronuclear multiple bond coherence, heteronuclear multiple quantum coherence, and 1H-(1)H correlation spectroscopy), the structure of one of the isomers was reported to consist of a covalent linkage between the C1 position of the methylglyoxal and either the C6 or the C8 position of the EC A ring, presumably generated by hydroxyalkylation and aromatic substitution reactions.
最近,我们小组通过标记实验报告称,在美拉德反应的水相葡萄糖-甘氨酸模型体系中,表儿茶素与C2、C3和C4糖片段形成了加合物反应产物。在当前的研究中,我们通过直接比较这些已报道的表儿茶素(EC)-糖片段加合物与仅由EC和著名的美拉德反应生成的葡萄糖片段(即乙二醛、乙醇醛、甲基乙二醛、甘油醛等)反应生成的加合物的液相色谱-质谱特性,研究了负责加合物生成的糖片段前体的身份。还通过核磁共振分析了EC-甲基乙二醛加合物反应产物的结构特性。EC-糖片段加合物中C2、C3和C4糖部分最可能的前体分别被鉴定为乙二醛、羟基丙酮和赤藓糖。对EC-甲基乙二醛的1H核磁共振分析表明,分析物经历了快速的构象/结构交换。使用低温(-25摄氏度)二维核磁共振分析(异核多键相干、异核多量子相干和1H-(1)H相关光谱),据报道其中一种异构体的结构由甲基乙二醛的C1位置与EC A环的C6或C8位置之间的共价键组成,推测是由羟烷基化和芳族取代反应产生的。