Messina Institute of Technology c/o Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, former Veterinary School, University of Messina, Viale G. Palatucci snc, Messina 98168, Italy; Fondazione Edmund Mach, via Mach 1, San Michele all'Adige 38010, Italy.
Messina Institute of Technology c/o Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, former Veterinary School, University of Messina, Viale G. Palatucci snc, Messina 98168, Italy.
J Chromatogr A. 2024 Aug 16;1730:465149. doi: 10.1016/j.chroma.2024.465149. Epub 2024 Jul 7.
In this study, multiple analytical approaches, including simultaneous enantiomeric and isotopic analysis, were employed to thoroughly investigate the volatile fraction in Moscato giallo grape berries and wines. For the qualitative and quantitative profiling, a fast GC-QqQ/MS approach was successfully utilized. However, prior to isotopic analysis, the extracts underwent an additional concentration step, necessitating an assessment of isotopic fractionation during the concentration process. Once the absence of carbon isotopic fractionation was confirmed, this research aimed to develop a suitable gas chromatographic method for the simultaneous detection of both enantiomeric and isotopic ratios of target monoterpenoids in Moscato giallo samples. To address the limitations associated with a one-dimensional approach, multidimensional gas chromatography was employed to enhance separation before IRMS and qMS detections. Utilizing a Deans switch transfer device, the coupling of an apolar column in the first dimension and a chiral cyclodextrin-based stationary phase in the second dimension proved effective for this purpose. The data obtained from the analysis of Moscato giallo samples allowed for the assessment of natural isotopic and enantiomeric distributions in grapes and wines for the first time in the literature. Significant enantiomeric excesses were observed for the target terpenoids investigated. Regarding isotopic distribution, a consistent trend was observed for all detected target terpenols, including the linalool enantiomers. To date, this study represents the first investigation of simultaneous δC and chiral investigation of the main terpenoids in oenological products in the literature.
在这项研究中,采用了多种分析方法,包括对映异构体和同位素同时分析,以彻底研究 Moscato giallo 葡萄浆果和葡萄酒中的挥发性成分。为了进行定性和定量分析,成功地利用了快速 GC-QqQ/MS 方法。然而,在进行同位素分析之前,提取物需要进行额外的浓缩步骤,因此需要评估浓缩过程中的同位素分馏。一旦确认不存在碳同位素分馏,本研究旨在开发一种合适的气相色谱方法,用于同时检测 Moscato giallo 样品中目标单萜的对映异构体和同位素比值。为了解决一维方法的局限性,采用多维气相色谱在进行 IRMS 和 qMS 检测之前增强分离效果。利用Dean 开关转移装置,在第一维中使用非极性柱,在第二维中使用手性环糊精固定相,证明这种方法非常有效。通过对 Moscato giallo 样品的分析获得的数据首次在文献中评估了葡萄和葡萄酒中天然同位素和对映异构体的分布。在所研究的目标萜烯中观察到显著的对映体过量。关于同位素分布,所有检测到的目标萜醇,包括芳樟醇的对映异构体,都呈现出一致的趋势。迄今为止,这项研究代表了文献中首次对葡萄酒产品中主要萜烯进行同时 δC 和手性研究。