Faculty of Science, Kunming University of Science and Technology, Kunming 650500, China.
Faculty of Science, Kunming University of Science and Technology, Kunming 650500, China.
Food Res Int. 2022 Dec;162(Pt A):112035. doi: 10.1016/j.foodres.2022.112035. Epub 2022 Oct 14.
The concentration and distribution of menthol enantiomers have great significance in discriminating natural mint varieties and evaluating the origin of foodstuffs containing menthol additives. However, the chiral separation of eight chiral menthol enantiomers in Mentha plants offers an easy approach to eliminating or reducing the identification technology problem. The application of derivatized β-cyclodextrin capillary chiral column coupled with derivatized γ-cyclodextrin capillary chiral column, and gas chromatography-mass spectrometry (GC-MS) technology, to isolate and analyze eight chiral menthol enantiomers in 23 natural Mentha plants was investigated. The results showed that the two-chiral columns tandem technology enabled the baseline separation of the eight menthol enantiomers. Four different menthol compounds were only detected in seven out of the 23 natural mint plants. (1R,3R,4S)-(-)-menthol and (1R,3S,4S)-(+)-neomenthol were detected in the seven mint plant samples, while (1S,3S,4R)-(+)-menthol and (1S,3R,4R)-(-)-neomenthol could not be detected in the seven mint plant samples. For the two enantiomer couples of (+/-)-isomenthol and (+/-)-neoisomenthol, only (+)-isomers were detected in field mint, candy mint, and peppermint. The Mentha plant samples were distinguished and identified by principal component analysis and radar chart statistical analysis based on the data of the menthol content and isomer ratio. Furthermore, the presence or absence of (1S,3S,4R)-(+)-menthol in the samples can be used as an identification factor for discriminating between synthetic menthol and natural sources of menthol.
薄荷醇对映异构体的浓度和分布对鉴别天然薄荷品种和评估含薄荷醇添加剂的食品的来源具有重要意义。然而,薄荷属植物中 8 种手性薄荷醇对映异构体的手性分离为消除或减少鉴定技术问题提供了一种简单的方法。本研究采用衍生化 β-环糊精毛细管手性柱与衍生化 γ-环糊精毛细管手性柱串联,并结合气相色谱-质谱(GC-MS)技术,对 23 种天然薄荷植物中的 8 种手性薄荷醇对映异构体进行了分离分析。结果表明,两 chiral columns 串联技术可实现 8 种薄荷醇对映异构体的基线分离。在 23 种天然薄荷植物中,只有 7 种植物中检测到 4 种不同的薄荷醇化合物。在这 7 个薄荷植物样品中检测到(1R,3R,4S)-(-)-薄荷醇和(1R,3S,4S)-(+)-新薄荷醇,而在这 7 个薄荷植物样品中未检测到(1S,3S,4R)-(+)-薄荷醇和(1S,3R,4R)-(-)-新薄荷醇。对于(+/-)异薄荷醇和(+/-)新异薄荷醇的两个对映体对,仅在野薄荷、糖果薄荷和薄荷中检测到(+)-异构体。基于薄荷醇含量和异构体比例的数据,采用主成分分析和雷达图统计分析对薄荷属植物样品进行区分和鉴定。此外,样品中(1S,3S,4R)-(+)-薄荷醇的存在与否可用作鉴别合成薄荷醇和天然薄荷醇来源的鉴定因子。