Faculdade de Farmácia (FF), Universidade Federal de Goiás (UFG), Goiânia 74605-170, Brazil.
Departamento de Química (DQ), Universidade Federal Rural de Pernambuco (UFRPE), Recife 52171-900, Brazil.
Biosensors (Basel). 2022 Dec 1;12(12):1112. doi: 10.3390/bios12121112.
Antioxidants are responsible for many beneficial health effects and are highly present in natural products, such as kombucha. Biosensors' development targeting antioxidants and phytomarkers are an active research field. This work aimed to propose a voltammetric polyphenolxidase () biosensor for catechin and total phenolic compounds quantification in kombucha samples. Optimizations were performed on the biosensor of to improve the accuracy and selectivity, such as enzyme-substrate interaction time, analytical responses for different patterns and signal differences with the carbon paste and modified carbon paste electrode. Kombucha probiotic drink samples were fermented for 7 to 14 days at a controlled temperature (28 ± 2 °C). A linear curve was made for catechin with a range of 10.00 to 60.00 µM, with a limit of detection of 0.13 µM and limit of quantification of 0.39 µM. The biosensor proposed in this work was efficient in determining the patterns of phenolic compounds in kombucha.
抗氧化剂对许多有益的健康影响负责,并且在天然产物中含量很高,如康普茶。针对抗氧化剂和植物标志物的生物传感器的开发是一个活跃的研究领域。本工作旨在提出一种伏安多酚氧化酶()生物传感器,用于定量测定康普茶样品中的儿茶素和总酚类化合物。在生物传感器上进行了优化,以提高准确性和选择性,例如酶-底物相互作用时间、不同模式的分析响应以及与碳糊和改性碳糊电极的信号差异。益生菌饮料样品在控制温度(28±2°C)下发酵 7 至 14 天。儿茶素的线性曲线范围为 10.00 至 60.00µM,检测限为 0.13µM,定量限为 0.39µM。本工作中提出的生物传感器在测定康普茶中酚类化合物的模式方面非常有效。