State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, China.
State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, China.
Food Chem. 2022 Dec 15;397:133759. doi: 10.1016/j.foodchem.2022.133759. Epub 2022 Jul 22.
Aiming at enhancing the biosensing detection of histamine in foods at high temperature, we developed a thermoregulatory biosensor based on diamine oxidase-immobilized phase-change microcapsules consisting of an n-docosane core, a TiO shell, and an electroactive polyaniline/ZnO composite coating layer. The microcapsules exhibit a satisfactory latent heat capacity of over 112 J/g for thermo-temperature regulation. Through an innovative integration of electroactive phase-change microcapsules and biological enzyme in the working electrode, the biosensor obtained a thermoregulatory function through reversible phase transitions by the n-docosane core under high-temperature environments. This enables the biosensor to achieve a higher response sensitivity of 28.57 µA⋅mM⋅cm and a lower detection limit of 0.473 µmol/L at the high assay temperatures compared to conventional histamine biosensors. With enhanced electrochemical biosensing performance through in-situ thermo-temperature regulation, the smart biosensor developed in this study has found practical applications for high-sensitive detection and high-accurate quantitive determination of histamine in foods across a broad temperature range.
针对提高食品中高温下组氨酸的生物传感检测,我们开发了一种基于固定化二胺氧化酶的相变型微胶囊的温度调节生物传感器,该微胶囊由正二十二烷内核、TiO 壳和电活性聚苯胺/ZnO 复合涂层组成。微胶囊具有超过 112 J/g 的令人满意的潜热容量,可实现热温度调节。通过在工作电极中创新地整合电活性相变微胶囊和生物酶,生物传感器通过正二十二烷内核在高温环境下的可逆相转变获得温度调节功能。与传统的组氨酸生物传感器相比,该生物传感器在高测定温度下具有 28.57 µA⋅mM⋅cm 的更高响应灵敏度和 0.473 µmol/L 的更低检测限。通过原位温度调节增强电化学生物传感性能,本研究开发的智能生物传感器在宽温度范围内对食品中组氨酸的高灵敏检测和高准确定量测定具有实际应用价值。