Zhang Yuqing, Kalpio Marika, Haraldsdóttir Hafdís, Gudmundsson Haraldur G, Haraldsson Gudmundur G, Sigurjónsson Svanur, Kristinsson Björn, Linderborg Kaisa M, Yang Baoru
Food Sciences, Department of Life Technologies, Faculty of Technology, University of Turku, Turun yliopisto, Turku FI-20014, Finland.
Science Institute, University of Iceland, Reykjavík 107, Iceland.
Anal Chem. 2024 Aug 13;96(34):13936-43. doi: 10.1021/acs.analchem.4c02513.
Chromatographic separation of triacylglycerol (TG) enantiomers is a highly challenging task of analytical chemistry because of the similar physicochemical properties. The analysis of chiral TGs is crucial for improving the knowledge of lipid biochemistry and for understanding the nutritional properties of fats and oils. Thus, this study aimed to systematically investigate the chiral resolution of TGs consisting of three different fatty acyls (FAs). Thirty-three asymmetric TG enantiopairs, including 49 synthesized enantiopure TGs and racemic TGs, were analyzed with a recycling chiral HPLC system. Twenty-six enantiopairs were successfully separated. Overall, having both unsaturated and saturated FAs in the outer positions or a difference in carbon chain length between two saturated FAs at the outer positions favored the separation of enantiomers. The retention time at separation correlated negatively with the -3 carbon number of the early eluting enantiomer and positively with the carbon number difference between -1 and -3. When the samples were studied in separate groups based on unsaturation and regioisomers, both the acyl carbon number and the degree of unsaturation of FAs in all three positions influenced the separation and elution behavior of chiral TGs, indicating an active role of both intermolecular interactions and steric hindrances. This is the first systematic study of the chiral separation of TGs consisting of three different FAs using a large number of enantiopairs. The novel findings on the behavior of TG enantiomers in a chiral environment provide important guidance and reference for a stereospecific study of the chemistry and biochemistry of natural lipids.
由于三酰甘油(TG)对映体的物理化学性质相似,其色谱分离是分析化学中一项极具挑战性的任务。手性TG的分析对于增进脂质生物化学知识以及理解油脂的营养特性至关重要。因此,本研究旨在系统地研究由三种不同脂肪酰基(FA)组成的TG的手性拆分。使用循环手性高效液相色谱系统分析了33对不对称TG对映体,包括49种合成的对映体纯TG和外消旋TG。成功分离出26对对映体。总体而言,在外层位置同时具有不饱和和饱和FA或外层位置的两个饱和FA之间的碳链长度存在差异有利于对映体的分离。分离时的保留时间与早期洗脱对映体的-3碳数呈负相关,与-1和-3之间的碳数差异呈正相关。当根据不饱和程度和区域异构体将样品分组研究时,所有三个位置的FA的酰基碳数和不饱和程度均影响手性TG的分离和洗脱行为,表明分子间相互作用和空间位阻均发挥了作用。这是首次使用大量对映体对由三种不同FA组成的TG进行手性分离的系统研究。TG对映体在手性环境中的行为的新发现为天然脂质的化学和生物化学的立体特异性研究提供了重要指导和参考。