De Angelis Elisabetta, Al-Ayoubi Omar, Pilolli Rosa, Monaci Linda, Bejjani Alice
Institute of Sciences of Food Production, National Research Council of Italy, Via G. Amendola 126/O, 70126 Bari, Italy.
Lebanese Atomic Energy Commission, National Council for Scientific Research, Riad El Solh, Beirut 107 2260, Lebanon.
Foods. 2024 Jun 27;13(13):2033. doi: 10.3390/foods13132033.
Saffron, renowned for its aroma and flavor, is susceptible to adulteration due to its high value and demand. Current detection methods, including ISO standards, often fail to identify specific adulterants such as safflower or turmeric up to 20% (/). Therefore, the quest continues for robust screening methods using advanced techniques to tackle this persistent challenge of safeguarding saffron quality and authenticity. Advanced techniques such as time-of-flight secondary ion mass spectrometry (TOF-SIMS), with its molecular specificity and high sensitivity, offer promising solutions. Samples of pure saffron and saffron adulterated with safflower and turmeric at three inclusion levels (5%, 10%, and 20%) were analyzed without prior treatment. Spectral analysis revealed distinct signatures for pure saffron, safflower, and turmeric. Through principal component analysis (PCA), TOF-SIMS effectively discriminated between pure saffron and saffron adulterated with turmeric and safflower at different inclusion levels. The variation between the groups is attributed to the characteristic peaks of safflower and the amino group peaks and mineral peaks of saffron. Additionally, a study was conducted to demonstrate that semi-quantification of the level of safflower inclusion can be achieved from the normalized values of its characteristic peaks in the saffron matrix.
藏红花以其香气和风味而闻名,因其高价值和高需求而容易受到掺假影响。包括ISO标准在内的当前检测方法,往往无法识别高达20%的特定掺假物,如红花或姜黄(/)。因此,人们继续寻求使用先进技术的强大筛选方法,以应对保障藏红花质量和真实性这一持续挑战。飞行时间二次离子质谱(TOF-SIMS)等先进技术,凭借其分子特异性和高灵敏度,提供了有前景的解决方案。对纯藏红花以及分别掺入5%、10%和20%红花和姜黄的藏红花样品进行了未经预处理的分析。光谱分析揭示了纯藏红花、红花和姜黄的独特特征。通过主成分分析(PCA),TOF-SIMS有效地区分了纯藏红花与不同掺入水平下掺入姜黄和红花的藏红花。组间差异归因于红花的特征峰以及藏红花的氨基峰和矿物峰。此外,还进行了一项研究,以证明可以从藏红花基质中红花特征峰的归一化值实现对红花掺入水平的半定量。