Analytical/Bioanalytical Chemistry & Nanotechnology Group, Department of Chemistry, University of Patras, Rio, 26504 Patras, Greece.
Hellenic Centre for Marine Research, Institute for Marine Biological Resources, 46.7 km Athens-Sounion, Anavyssos, 19013 Attika, Greece.
Molecules. 2024 Feb 1;29(3):677. doi: 10.3390/molecules29030677.
Food and fish adulteration is a major public concern worldwide. Apart from economic fraud, health issues are in the forefront mainly due to severe allergies. Sardines are one of the most vulnerable-to-adulteration fish species due to their high nutritional value. Adulteration comprises the substitution of one fish species with similar species of lower nutritional value and lower cost. The detection of adulteration, especially in processed fish products, is very challenging because the morphological characteristics of the tissues change, making identification by the naked eye very difficult. Therefore, new analytical methods and (bio)sensors that provide fast analysis with high specificity, especially between closely related fish species, are in high demand. DNA-based methods are considered as important analytical tools for food adulteration detection. In this context, we report the first DNA sensors for sardine species identification. The sensing principle involves species recognition, via short hybridization of PCR-amplified sequences with specific probes, capture in the test zone of the sensor, and detection by the naked eye using gold nanoparticles as reporters; thus, avoiding the need for expensive instruments. As low as 5% adulteration of with was detected with high reproducibility in the processed mixtures simulating canned fish products.
食品和鱼类掺假是一个全球性的重大公众关注问题。除了经济欺诈外,主要由于严重过敏,健康问题也首当其冲。沙丁鱼是最容易掺假的鱼类之一,因为它们具有很高的营养价值。掺假包括用营养价值和成本较低的类似物种替代一种鱼类。由于组织的形态特征发生变化,掺假的检测,特别是在加工鱼类产品中,极具挑战性,这使得肉眼识别变得非常困难。因此,需要新的分析方法和(生物)传感器,这些方法能够提供快速、高特异性的分析,特别是在密切相关的鱼类物种之间。基于 DNA 的方法被认为是食品掺假检测的重要分析工具。在这方面,我们报告了用于沙丁鱼物种鉴定的第一个 DNA 传感器。传感原理涉及物种识别,即通过 PCR 扩增序列与特定探针的短杂交,在传感器的测试区域捕获,然后使用金纳米粒子作为报告物进行肉眼检测;因此,避免了使用昂贵仪器的需要。在模拟罐头鱼产品的加工混合物中,即使 5%的 被掺假,也可以用高重复性进行检测。