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藜麦中十种罕见支链烷基间苯二酚的分析与分离。

Profiling and Isolation of Ten Rare Branched-Chain Alkylresorcinols in Quinoa.

机构信息

Institute of Food Chemistry, University of Hohenheim, D-70599 Stuttgart, Germany.

出版信息

Molecules. 2023 Jul 5;28(13):5220. doi: 10.3390/molecules28135220.

Abstract

Alkylresorcinols (∑ARs) are bioactive lipid compounds predominantly found in cereals. These amphiphilic compounds exist in a high structural diversity and can be divided into two main groups, i.e., 5-alkylresorcinols (ARs) and 2-methyl-5-alkylresorcinols (mARs). The pseudocereal quinoa has a very unique AR profile, consisting not only of straight-chain alkyl chains but also - and -branched isomers. Here, we describe a method for the isolation of such methyl-branched ARs and mARs from quinoa. The enrichment of the ∑AR fraction from the lipid extracts by centrifugal partition chromatography (CPC) was followed by ∑AR profiling using countercurrent chromatography (CCC) and GC/MS analysis of CCC fractions. A total of 112 ∑ARs could be detected, 63 of which had not been previously described in quinoa. Due to this high number of ∑ARs, the direct isolation of individual ARs was not possible using conventional CCC. Instead, the more powerful heart-cut mode was applied to enrich the target compounds. A final purification step-the separation of CCC-co-eluting mARs from ARs -was performed via silver ion chromatography. Altogether, ten rare branched-chain ∑ARs (five -branched mARs and five -branched ARs, including mAR19:0- and AR20:0-) were isolated with purities up to 98% in the double-digit mg range.

摘要

烷基间苯二酚(∑ARs)是一种主要存在于谷物中的生物活性脂质化合物。这些两亲性化合物具有高度的结构多样性,可分为两个主要类别,即 5-烷基间苯二酚(ARs)和 2-甲基-5-烷基间苯二酚(mARs)。假谷物藜麦具有非常独特的 AR 谱,不仅含有直链烷基链,还含有 -和 -支链异构体。在这里,我们描述了一种从藜麦中分离这种甲基支链 ARs 和 mARs 的方法。通过离心分配色谱(CPC)从脂质提取物中富集∑AR 馏分,然后通过逆流色谱(CCC)进行∑AR 分析,并对 CCC 馏分进行 GC/MS 分析。共检测到 112 种∑ARs,其中 63 种在藜麦中尚未有过描述。由于∑ARs 的数量如此之多,使用常规 CCC 无法直接分离出各个 ARs。相反,应用更强大的中心切割模式来富集目标化合物。最后一步纯化——通过银离子色谱分离 CCC 共洗脱的 mARs 和 ARs——通过银离子色谱分离。总共分离出十种罕见的支链∑ARs(五种 -支链 mARs 和五种 -支链 ARs,包括 mAR19:0-和 AR20:0-),纯度高达 98%,在两位数 mg 范围内。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00b0/10343731/55bbbe487350/molecules-28-05220-g001.jpg

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