Pradela-Filho Lauro A, Araújo Diele A G, Takeuchi Regina M, Santos André L, Henry Charles S
Institute of Chemistry, Federal University of Uberlandia, 38400-902, Uberlandia, Minas Gerais, Brazil; Institute of Exact and Natural Sciences of Pontal, Federal University of Uberlandia, 38304-402, Ituiutaba, Minas Gerais, Brazil.
Department of Chemistry, Colorado State University, Fort Collins, CO, 80523, United States.
Anal Chim Acta. 2021 Feb 22;1147:116-123. doi: 10.1016/j.aca.2020.12.059. Epub 2021 Jan 2.
This study reports a new electrochemical method for tryptamine determination using a paper-based microfluidic device and a thermoplastic electrode (TPE) as an amperometric detector. Tryptamine (Tryp) is a biogenic amine present in drinks and foods. Even though this compound has some beneficial effects on human health, the ingestion of foods with high concentrations of Tryp may be detrimental, which justifies the need for monitoring the Tryp levels. The TPEs were made from 50% carbon black and 50% polycaprolactone and characterized by cyclic voltammetry, demonstrating enhancement in the analytical response compared to other carbon composites. TPEs also showed a better antifouling effect for Tryp compared to conventional glassy carbon electrodes. Once characterized, the electrodes were incorporated into the microfluidic device to determine Tryp in water and cheese samples using amperometry. A linear range was achieved from 10 to 75 μmol L with limits of detection and quantification of 3.2 and 10.5 μmol L, respectively. Therefore, this work shows promising findings of the electrochemical determination of Tryp, bringing valuable results regarding the electrochemical properties of thermoplastic composites.
本研究报告了一种使用纸质微流控装置和热塑性电极(TPE)作为安培检测器测定色胺的新电化学方法。色胺(Tryp)是一种存在于饮料和食物中的生物胺。尽管这种化合物对人体健康有一些有益影响,但摄入高浓度Tryp的食物可能有害,这证明了监测Tryp水平的必要性。TPE由50%的炭黑和50%的聚己内酯制成,并通过循环伏安法进行表征,结果表明与其他碳复合材料相比,其分析响应有所增强。与传统玻碳电极相比,TPE对Tryp还表现出更好的抗污染效果。电极经表征后,被集成到微流控装置中,采用安培法测定水和奶酪样品中的Tryp。线性范围为10至75 μmol/L,检测限和定量限分别为3.2和10.5 μmol/L。因此,这项工作展示了色胺电化学测定的有前景的结果,带来了关于热塑性复合材料电化学性质的有价值的成果。