Department of Life Sciences, University of Modena and Reggio Emilia, Via G. Campi 103, 41125 Modena, Italy.
Doctorate School in Clinical and Experimental Medicine (CEM), University of Modena and Reggio Emilia, 41125 Modena, Italy.
Molecules. 2021 Sep 7;26(18):5439. doi: 10.3390/molecules26185439.
Essential oils (EOs) are more and more frequently adulterated due to their wide usage and large profit, for this reason accurate and precise authentication techniques are essential. This work aims at the application of qNMR as a versatile tool for the quantification of vegetable oils potentially usable as adulterants or diluents in EOs. This approach is based on the quantification of both H and C glycerol backbone signals, which are actually present in each vegetable oil containing triglycerides. For the validation, binary mixtures of rosemary EO and corn oil (0.8-50%) were prepared. To verify the general feasibility of this technique, other different mixtures including lavender, citronella, orange and peanut, almond, sunflower, and soy seed oils were analyzed. The results showed that the efficacy of this approach does not depend on the specific combination of EO and vegetable oil, ensuring its versatility. The method was able to determine the adulterant, with a mean accuracy of 91.81 and 89.77% for calculations made on H and C spectra, respectively. The high precision and accuracy here observed, make H-qNMR competitive with other well-established techniques. Considering the current importance of quality control of EOs to avoid fraudulent practices, this work can be considered pioneering and promising.
由于用途广泛且利润丰厚,香精油(EOs)越来越频繁地被掺假,因此需要准确和精确的鉴定技术。本工作旨在将 qNMR 应用于作为潜在掺杂物或稀释剂在 EOs 中使用的植物油的定量分析。这种方法基于 H 和 C 甘油骨架信号的定量,这些信号实际上存在于每种含有甘油三酯的植物油中。为了验证,制备了迷迭香 EO 和玉米油(0.8-50%)的二元混合物。为了验证该技术的一般可行性,还分析了其他不同的混合物,包括薰衣草、香茅、橙和花生、杏仁、葵花籽和大豆油。结果表明,该方法的效果不依赖于 EO 和植物油的具体组合,从而保证了其通用性。该方法能够确定掺杂物,H 和 C 光谱的计算平均准确度分别为 91.81%和 89.77%。观察到的高精度和准确性使 H-qNMR 具有竞争力,与其他成熟的技术相当。考虑到当前对 EOs 质量控制以避免欺诈行为的重要性,这项工作可以被认为是开创性和有前途的。