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基于新型时域核磁共振的特性用于快速、无标记的橄榄油分析。

Novel time-domain NMR-based traits for rapid, label-free Olive oils profiling.

作者信息

Dos Santos Vasco Rafael, Goncalves Victor, Deng Peishan, Ribeiro Ana Cristina, Teigao Mariana Maia, Dias Bárbara, Mendes Pinto Inês, Gallo Juan, Peng Weng Kung

机构信息

University of Minho, Braga, 4704-553, Portugal.

International Iberian Nanotechnology Laboratory, Braga, 4715-330, Portugal.

出版信息

NPJ Sci Food. 2022 Dec 13;6(1):59. doi: 10.1038/s41538-022-00173-z.

Abstract

Olive oil is one of the oldest and essential edible oils in the market. The classification of olive oils (e.g. extra virgin, virgin, refined) is often influenced by factors ranging from its complex inherent physiochemical properties (e.g. fatty acid profiles) to the undisclosed manufacturing processes. Therefore, olive oils have been the target of adulteration due to its profitable margin. In this work, we demonstrate that multi-parametric time-domain NMR relaxometry can be used to rapidly (in minutes) identify and classify olive oils in label-free and non-destructive manner. The subtle differences in molecular microenvironment of the olive oils induce substantial changes in the relaxation mechanism in the time-domain NMR regime. We demonstrated that the proposed NMR-relaxation based detection (AUC = 0.95) is far more sensitive and specific than the current gold-standards in the field i.e. near-infrared spectroscopy (AUC = 0.84) and Ultraviolet-visible spectroscopy (AUC = 0.73), respectively. We further show that, albeit the inherent complexity of olive plant natural phenotypic variations, the proposed NMR-relaxation based traits may be a viable mean (AUC = 0.71) in tracing the regions of origin for olive trees, in agreement with their geographical orientation.

摘要

橄榄油是市场上最古老且必不可少的食用油之一。橄榄油的分类(例如特级初榨、初榨、精炼)常常受到多种因素影响,从其复杂的固有物理化学性质(如脂肪酸谱)到未公开的制造工艺。因此,由于利润空间可观,橄榄油一直是掺假的目标。在这项工作中,我们证明多参数时域核磁共振弛豫测量法可用于快速(在数分钟内)以无标记且无损的方式识别和分类橄榄油。橄榄油分子微环境中的细微差异会在时域核磁共振体系中引起弛豫机制的显著变化。我们证明,所提出的基于核磁共振弛豫的检测方法(曲线下面积AUC = 0.95)比该领域目前的金标准即近红外光谱法(AUC = 0.84)和紫外可见光谱法(AUC = 0.73)分别更灵敏且更具特异性。我们进一步表明,尽管橄榄植物天然表型变异具有内在复杂性,但所提出的基于核磁共振弛豫的特征可能是追踪橄榄树原产地的一种可行方法(AUC =...

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/908c/9747969/d26445b9d39e/41538_2022_173_Fig1_HTML.jpg

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