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利用一种简单的氨响应传感器对生物胺进行比率监测。

Ratiometric Monitoring of Biogenic Amines by a Simple Ammonia-Response Aiegen.

作者信息

Guo Xujing, Chen Xirui, Chen Rui, Tu Yujie, Lu Tianying, Guo Yuqian, Guo Liang, Xiong Yonghua, Huang Xiaolin, Tang Ben Zhong

机构信息

State Key Laboratory of Food Science and Technology, School of Food Science and Technology, Nanchang University, Nanchang 330031, China.

Jiangxi-OAI Joint Research Institute, Nanchang University, Nanchang 330047, China.

出版信息

Foods. 2022 Mar 24;11(7):932. doi: 10.3390/foods11070932.

Abstract

Herein, we developed a paper-based smart sensing chip for the real-time, visual, and non-destructive monitoring of food freshness using a ratiometric aggregation-induced emission (AIE) luminogen (i.e., HMQ, protonated 4-(triphenylamine)styryl)quinoxalin-2(1)-one) as pH sensitive indicators. Upon exposure to amine vapors, the deprotonation of HMQ occurs and triggers its color change from blue to yellow, with the fluorescence redshift from blue to amaranth. Consequently, we successfully achieved the sensitive detection of ammonia vapors by recording the bimodal color and fluorescence changes. Given the high sensitivity of HMQ to ammonia vapor, a paper-based smart sensor chip was prepared by depositing HMQ on the commercial qualitative filter paper through a physical deposition strategy. After being placed inside the sealed containers, the developed HMQ-loaded paper chip was applied to the real-time monitoring of biogenic amine contents according to its color difference and ratio fluorescence change. The detection results were further compared with those obtained by the high-performance liquid chromatography method, which verified the feasibility of the designed paper chip for the food spoilage degree evaluation. Briefly, this work indicates that the designed HMQ-loaded paper chip could be a promising approach for improving food freshness monitoring.

摘要

在此,我们开发了一种基于纸张的智能传感芯片,用于使用比率型聚集诱导发光(AIE)发光剂(即HMQ,质子化的4-(三苯胺)苯乙烯基喹喔啉-2(1)-酮)作为pH敏感指示剂对食品新鲜度进行实时、可视化和无损监测。暴露于胺类蒸汽时,HMQ会发生去质子化并引发其颜色从蓝色变为黄色,荧光从蓝色红移至紫红色。因此,我们通过记录双峰颜色和荧光变化成功实现了对氨气的灵敏检测。鉴于HMQ对氨气具有高灵敏度,通过物理沉积策略将HMQ沉积在商用定性滤纸上制备了一种基于纸张的智能传感器芯片。将制备好的负载HMQ的纸质芯片置于密封容器内后,根据其颜色差异和比率荧光变化,将其应用于生物胺含量的实时监测。将检测结果与通过高效液相色谱法获得的结果进一步比较,验证了所设计的纸质芯片用于评估食品腐败程度的可行性。简而言之,这项工作表明所设计的负载HMQ的纸质芯片可能是一种改善食品新鲜度监测的有前景的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ff9/8997827/a801c5f94271/foods-11-00932-sch001.jpg

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