Department of Chemistry, Physics and Environment, Faculty of Sciences and Environment, "Dunărea de Jos" University of Galaţi, 47 Domnească Street, 800008 Galaţi, Romania.
Int J Mol Sci. 2021 Nov 24;22(23):12708. doi: 10.3390/ijms222312708.
Electrochemical sensors, sensor arrays and biosensors, alongside chemometric instruments, have progressed remarkably of late, being used on a wide scale in the qualitative and quantitative evaluation of olive oil. Olive oil is a natural product of significant importance, since it is a rich source of bioactive compounds with nutritional and therapeutic properties, and its quality is important both for consumers and for distributors. This review aims at analysing the progress reported in the literature regarding the use of devices based on electrochemical (bio)sensors to evaluate the bioactive compounds in olive oil. The main advantages and limitations of these approaches on construction technique, analysed compounds, calculus models, as well as results obtained, are discussed in view of estimation of future progress related to achieving a portable, practical and rapid miniature device for analysing the quality of virgin olive oil (VOO) at different stages in the manufacturing process.
电化学传感器、传感器阵列和生物传感器,以及化学计量学仪器,最近取得了显著进展,广泛应用于橄榄油的定性和定量评估。橄榄油是一种具有重要意义的天然产物,因为它是生物活性化合物的丰富来源,具有营养和治疗特性,其质量对消费者和分销商都很重要。本综述旨在分析文献中关于使用基于电化学(生物)传感器的设备评估橄榄油中生物活性化合物的进展情况。讨论了这些方法在构建技术、分析化合物、计算模型以及所获得结果方面的主要优点和局限性,以期估计在制造过程的不同阶段分析特级初榨橄榄油(VOO)质量的便携式、实用和快速微型设备方面取得未来进展。