Key Laboratory of South Subtropical Fruit Biology and Genetic Resource Utilization (MARA), Guangdong Province Key Laboratory of Tropical and Subtropical Fruit Tree Research, Institute of Fruit Tree Research, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, China.
Molecules. 2023 Jul 10;28(14):5316. doi: 10.3390/molecules28145316.
Portable and low-cost analytical devices are essential for rapid detection of bioactive substrates in agricultural products. This study presents the first highly integrated microelectrochemical sensor based on pencil graphite for rapid and sensitive detection of hesperidin in 'Chachi' peel. The surface morphology and characterization as well as the electrochemical property of pencil graphite was investigated and discussed. A high electrocatalytic efficiency of hesperidin has been found at used pencil graphite-based microelectrodes. Kinetic analysis was carried out to further understand the electrochemical process of hesperidin at a pencil graphite microelectrode. Consequently, a portable and highly-integrated microelectrochemical sensor exhibits a sensitivity of 0.7251 μA cm μM and a detection limit as low as 25 nM (S/N = 3), and high selectivity was fabricated. Proposed microelectrochemical sensors were applied to electrochemically determinate the hesperidin content in the extract of "chachi" peel. As a result, the concentration of hesperidin in the actual real sample detected electrochemically with the proposed portable and low-cost microelectrochemical sensors is highly consistent to that obtained with a common chromatographic method, thus indicating the good reliability and that it can be used in practical applications.
便携式和低成本的分析设备对于快速检测农产品中的生物活性底物至关重要。本研究提出了第一个基于铅笔石墨的高度集成微电化学传感器,用于快速灵敏地检测 'Chachi' 果皮中的橙皮苷。研究并讨论了铅笔石墨的表面形貌和特性以及电化学性质。在使用的铅笔石墨基微电极上发现了橙皮苷的高电催化效率。进行了动力学分析,以进一步了解橙皮苷在铅笔石墨微电极上的电化学过程。因此,构建了一种具有高灵敏度(0.7251 μA cm μM)和低检测限(低至 25 nM(S/N = 3))的便携式和高度集成的微电化学传感器,并具有高选择性。所提出的微电化学传感器用于电化学测定 'chachi' 果皮提取物中的橙皮苷含量。结果表明,用所提出的便携式和低成本微电化学传感器电化学检测到的实际真实样品中橙皮苷的浓度与常用色谱法获得的浓度高度一致,从而表明其良好的可靠性,可用于实际应用。