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发展等效链长(ECL)规则用于脂质化合物。

Development of equivalent chain length (ECL) rules for lipid compounds.

机构信息

University of Hohenheim, Institute of Food Chemistry, Department of Food Chemistry (170b), D-70593 Stuttgart, Germany.

University of Hohenheim, Institute of Food Chemistry, Department of Food Chemistry (170b), D-70593 Stuttgart, Germany.

出版信息

J Chromatogr A. 2019 Aug 16;1599:187-195. doi: 10.1016/j.chroma.2019.04.042. Epub 2019 Apr 17.

Abstract

Lipid compounds (fatty acids, tocochromanols, phytosterols) are difficult to separate by countercurrent chromatography (CCC) due to the existence of many similar structures and the limited availability of suitable biphasic solvent systems. Here we show that for these compound classes the success of a CCC separation can be directly derived from the chemical structures without the necessity of experimental determinations of K values. In most cases, lipid compounds differ in the total carbon number and the number of double bonds. For each structure the so-called equivalent chain length (ECL) can be calculated by subtracting a distinct value for each double bond from the total carbon number. Empirically, we verified that in the case of unbranched fatty acids (determined as methyl esters) one double bond corresponds with two carbons. Evaluation of CCC data from seventeen phytosterols in five plant oils and nine tocochromanol standards showed that one double bond was equal with one carbon for both lipid classes. Most compounds with different ECL can be separated by CCC but not those with the same ECL. In these cases, the selection of a suitable source for isolation of a particular lipid compound becomes very important. Knowledge of the impact of double bonds may also be a helpful tool for other substance classes.

摘要

由于存在许多相似的结构,以及合适的双相溶剂系统的有限可用性,脂类化合物(脂肪酸、生育三烯酚、植物固醇)很难通过逆流色谱(CCC)进行分离。在这里,我们表明对于这些化合物类别,CCC 分离的成功可以直接从化学结构中得出,而无需实验确定 K 值。在大多数情况下,脂类化合物在总碳原子数和双键数上有所不同。对于每种结构,所谓的等效链长(ECL)可以通过从总碳原子数中减去每个双键的特定值来计算。根据经验,我们验证了在直链脂肪酸(以甲酯形式测定)的情况下,一个双键对应于两个碳原子。对来自五种植物油中的十七种植物固醇和九种生育三烯酚标准品的 CCC 数据进行评估表明,对于这两种脂类,一个双键等于一个碳原子。大多数具有不同 ECL 的化合物可以通过 CCC 分离,但 ECL 相同的化合物则不能。在这些情况下,选择合适的来源来分离特定的脂类化合物就变得非常重要。双键的影响知识也可能成为其他物质类别的有用工具。

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