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从玉米麸皮中分离并鉴定8-O-4/8-O-4-和8-8/8-O-4连接的脱氢三阿魏酸的结构特征。

Isolation and structural characterisation of 8-O-4/8-O-4- and 8-8/8-O-4-coupled dehydrotriferulic acids from maize bran.

作者信息

Funk Carola, Ralph John, Steinhart Hans, Bunzel Mirko

机构信息

Department of Food Chemistry, Institute of Biochemistry and Food Chemistry, University of Hamburg, Grindelallee 117, 20146 Hamburg, Germany.

出版信息

Phytochemistry. 2005 Feb;66(3):363-71. doi: 10.1016/j.phytochem.2004.12.008.

DOI:10.1016/j.phytochem.2004.12.008
PMID:15680993
Abstract

Two new dehydrotriferulic acids were isolated from saponified maize bran insoluble fiber using Sephadex LH-20 chromatography followed by semi-preparative RP-HPLC. Based on UV-spectroscopy, mass spectroscopy and one- and two-dimensional NMR experiments, the structures were identified as 8-O-4,8-O-4-dehydrotriferulic acid and 8-8(cyclic),8-O-4-dehydrotriferulic acid. Which of the possible phenols in the initially formed 8-8-dehydrodiferulate was etherified by 4-O-8-coupling with ferulate has been unambiguously elucidated. The ferulate dehydrotrimers which give rise to these dehydrotriferulic acids following saponification are presumed, like the dehydrodiferulates, to cross-link polysaccharides. Neither dehydrotriferulic acid described here involves a 5-5-dehydrodiferulic acid unit; only the 5-5-dehydrodimer may be formed intramolecularly. However, whether dehydrotriferulates are capable of cross-linking more than two polysaccharide chains remains open. Although the levels of the isolated ferulate dehydrotrimers are lower than those of the ferulate dehydrodimers, the isolation now of three different dehydrotriferulates indicates that trimers contribute to a strong network cross-linking plant cell wall polysaccharides.

摘要

采用葡聚糖凝胶LH - 20柱色谱法,随后进行半制备反相高效液相色谱法,从皂化玉米麸皮不溶性纤维中分离出两种新的脱氢阿魏酸。基于紫外光谱、质谱以及一维和二维核磁共振实验,其结构被鉴定为8 - O - 4,8 - O - 4 - 脱氢阿魏酸和8 - 8(环状),8 - O - 4 - 脱氢阿魏酸。最初形成的8 - 8 - 脱氢二阿魏酸中可能的酚类物质是通过与阿魏酸的4 - O - 8偶联进行醚化的,这一点已得到明确阐明。推测这些皂化后产生这些脱氢阿魏酸的阿魏酸脱氢三聚体,与脱氢二阿魏酸一样,能够交联多糖。本文所述的两种脱氢阿魏酸均不涉及5 - 5 - 脱氢二阿魏酸单元;只有5 - 5 - 脱氢二聚体可能在分子内形成。然而,脱氢阿魏酸三聚体是否能够交联两条以上的多糖链仍未明确。尽管分离得到的阿魏酸脱氢三聚体的含量低于阿魏酸脱氢二聚体,但现在分离出三种不同的脱氢阿魏酸三聚体表明,三聚体有助于形成交联植物细胞壁多糖的强网络结构。

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