Electrochemical Detection of Tributyrin using Gold Nanoparticle Functionalized Screen-Printed Electrode

A. Aidil, S. R. Balakrishnan, C. W. Zanariah, W. Z. W. Ismail, M. Sahrim, I. Ismail, J. Jamaludin
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Abstract

Fat content volume and determining its presence plays a major role in food safety, security, and in nutritional health sector. Tributyrin is one of the triglyceride groups that acts as a liquid fat in the food. In this paper, a study on the functionalized screen-printed electrode (SPE) with graphene (GPH) and gold nanoparticles (GNP) immobilized with lipase is presented. The two-dimensional form of GPH and threedimensional structure of GNP make a suitable surface suitable for the enzyme immobilization. Cyclic voltammetry (CV) measurement of the GPH/GNP/Lipase/SPE has produced a fine reaction. Tributyrin concentration range from 0.1 mg/ml to 1000 mg/ml were measured and detection limit of 0.1mg/ml was achieved. The current response of the GPH/GNP/Lipase/SPE was proportional to the concentration of the tributyrin taken below 1V point at oxidation peak. These results will make the GPH/GNP/Lipase/SPE a quality bioelectrode especially in the field of triglyceride detection.
金纳米颗粒功能化丝网印刷电极电化学检测三丁酸酯
脂肪含量、体积和确定其存在在食品安全、保障和营养卫生部门发挥着重要作用。三丁酸甘油酯是甘油三酯中的一种,在食物中充当液体脂肪。本文研究了用脂肪酶固定化石墨烯(GPH)和金纳米颗粒(GNP)制备的功能化丝网印刷电极(SPE)。GPH的二维形态和GNP的三维结构为固定化酶提供了合适的表面。循环伏安法(CV)测定了GPH/GNP/脂肪酶/固相萃取的精细反应。测定了三丁酸甘油酯浓度范围为0.1mg/ml ~ 1000 mg/ml,检出限为0.1mg/ml。GPH/GNP/Lipase/SPE的电流响应与氧化峰1V以下三丁酸的浓度成正比。这些结果将使GPH/GNP/Lipase/SPE成为甘油三酯检测领域的优质生物电极。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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