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基于铱纳米颗粒催化剂的安培型生物传感器用于甘油三酯的检测。

Detection of triglyceride using an iridium nano-particle catalyst based amperometric biosensor.

作者信息

Liao Wei-Yin, Liu Chung-Chiun, Chou Tse-Chuan

机构信息

Department of Chemical Engineering, National Cheng Kung University, Tainan, Taiwan.

出版信息

Analyst. 2008 Dec;133(12):1757-63. doi: 10.1039/b801703d. Epub 2008 Sep 19.

Abstract

The detection and quantification of triglyceride (TG) using an iridium nano-particle modified carbon based biosensor was successfully carried out in this study. The detection procedures were based on the electrochemical detection of enzymatically produced NADH. TG was hydrolyzed by lipase and the glycerol produced was catalytically oxidized by NAD-dependent glycerol dehydrogenase producing NADH in a solution containing NAD(+). Glyceryl tributyrate, a short chain triglyceride, was chosen as the substrate for the evaluation of this TG biosensor in bovine serum and human serum. A linear response to glyceryl tributyrate in the concentration range of 0 to 10 mM and a sensitivity of 7.5 nA mM(-1) in bovine serum and 7.0 nA mM(-1) in human serum were observed experimentally. The potential interference of species such as uric acid (UA) and ascorbic acid (AA) was assessed. The incorporation of a selected surfactant and an increase in the incubation temperature appeared to enhance the performance of this biosensor. The conditions for the determination of TG levels in bovine serum using this biosensor were optimized, with sunflower seed oil being used as an analyte to simulate the detection of TG in blood. The experimental results demonstrated that this iridium nano-particle modified working electrode based biosensor provided a relatively simple means for the accurate determination of TG in serum.

摘要

本研究成功实现了使用铱纳米粒子修饰的碳基生物传感器对甘油三酯(TG)的检测和定量。检测程序基于对酶促产生的NADH的电化学检测。TG被脂肪酶水解,产生的甘油在含有NAD(+)的溶液中被NAD依赖性甘油脱氢酶催化氧化生成NADH。选择短链甘油三酯三丁酸甘油酯作为底物,在牛血清和人血清中评估该TG生物传感器。实验观察到对三丁酸甘油酯在0至10 mM浓度范围内呈线性响应,在牛血清中的灵敏度为7.5 nA mM(-1),在人血清中的灵敏度为7.0 nA mM(-1)。评估了尿酸(UA)和抗坏血酸(AA)等物质的潜在干扰。加入选定的表面活性剂和提高孵育温度似乎能增强该生物传感器的性能。使用该生物传感器测定牛血清中TG水平的条件得到优化,以葵花籽油作为分析物来模拟血液中TG的检测。实验结果表明,这种基于铱纳米粒子修饰工作电极的生物传感器为准确测定血清中的TG提供了一种相对简单的方法。

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