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基于本地取材的激光刻蚀石墨烯生物传感器用于检测食物样本中的生物胺。

Laser Scribed Graphene Biosensor for Detection of Biogenic Amines in Food Samples Using Locally Sourced Materials.

机构信息

Department of Food Engineering, Universidad del Valle, Cali 760032, Colombia.

Department of Biological and Agricultural Engineering, Texas A&M University, College Station, TX 77843, USA.

出版信息

Biosensors (Basel). 2018 Apr 24;8(2):42. doi: 10.3390/bios8020042.

Abstract

In foods, high levels of biogenic amines (BA) are the result of microbial metabolism that could be affected by temperatures and storage conditions. Thus, the level of BA is commonly used as an indicator of food safety and quality. This manuscript outlines the development of laser scribed graphene electrodes, with locally sourced materials, for reagent-free food safety biosensing. To fabricate the biosensors, the graphene surface was functionalized with copper microparticles and diamine oxidase, purchased from a local supermarket; and then compared to biosensors fabricated with analytical grade materials. The amperometric biosensor exhibits good electrochemical performance, with an average histamine sensitivity of 23.3 µA/mM, a lower detection limit of 11.6 µM, and a response time of 7.3 s, showing similar performance to biosensors constructed from analytical grade materials. We demonstrated the application of the biosensor by testing total BA concentration in fish paste samples subjected to fermentation with lactic acid bacteria. Biogenic amines concentrations prior to lactic acid fermentation were below the detection limit of the biosensor, while concentration after fermentation was 19.24 ± 8.21 mg histamine/kg, confirming that the sensor was selective in a complex food matrix. The low-cost, rapid, and accurate device is a promising tool for biogenic amine estimation in food samples, particularly in situations where standard laboratory techniques are unavailable, or are cost prohibitive. This biosensor can be used for screening food samples, potentially limiting food waste, while reducing chances of foodborne outbreaks.

摘要

在食品中,生物胺(BA)的高水平是微生物代谢的结果,这种代谢可能受到温度和储存条件的影响。因此,BA 的水平通常被用作食品安全和质量的指标。本文概述了使用激光刻蚀石墨烯电极,结合本地采购的材料,进行无试剂食品安全生物传感的开发。为了制造生物传感器,使用从当地超市购买的铜微粒和二胺氧化酶对石墨烯表面进行功能化;然后将其与使用分析级材料制造的生物传感器进行比较。电流型生物传感器具有良好的电化学性能,平均组胺灵敏度为 23.3 μA/mM,检测下限为 11.6 μM,响应时间为 7.3 s,与使用分析级材料构建的生物传感器性能相似。我们通过测试经乳酸菌发酵的鱼糜样品中的总 BA 浓度来展示生物传感器的应用。在进行乳酸发酵之前,生物胺的浓度低于生物传感器的检测限,而发酵后的浓度为 19.24 ± 8.21 mg 组胺/公斤,证实了传感器在复杂食品基质中的选择性。这种低成本、快速和准确的设备是一种很有前途的食品样品中生物胺估计的工具,特别是在标准实验室技术不可用或成本过高的情况下。这种生物传感器可以用于筛选食品样品,从而有可能限制食物浪费,并减少食源性疾病爆发的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8ef/6023090/e4f8f2ebebc1/biosensors-08-00042-g001.jpg

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