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碘酚蓝增强鲁米诺化学发光及其在过氧化氢和葡萄糖检测中的应用。

Iodophenol blue-enhanced luminol chemiluminescence and its application to hydrogen peroxide and glucose detection.

机构信息

Tianjin Key Laboratory for Modern Drug Delivery & High-Efficiency, School of Pharmaceutical Science and Technology, Tianjin University, Tianjin 300072, People's Republic of China.

Tianjin Key Laboratory for Modern Drug Delivery & High-Efficiency, School of Pharmaceutical Science and Technology, Tianjin University, Tianjin 300072, People's Republic of China.

出版信息

Talanta. 2016 Jan 1;146:655-61. doi: 10.1016/j.talanta.2015.06.059. Epub 2015 Jun 23.

Abstract

In this study, we found that iodophenol blue can enhance the weak chemiluminescence (CL) of luminol-H2O2 system. With the aid of CL spectral, electron spin resonance (ESR) spectral measurements and studies on the effects of various free radical scavengers on the iodophenol blue-enhanced luminol-H2O2 system, we speculated that iodophenol blue may react with H2O2 and oxygen to produce oxidizing radical species such as OH(•) and O2(•-) resulting the formation of (1)O2. The generated (1)O2 may react with luminol anion generating an unstable endoperoxide and subsequent 3-aminophthalate* (3-APA*). When the excited-state 3-APA returned to the ground-state, an enhanced CL was observed. Based on the H2O2 concentration dependence of the catalytic activity of iodophenol blue, a cheap, simple, sensitive CL assay for the determination of H2O2 was established. Under the optimum experimental conditions, a linear relationship between the relative CL intensity and H2O2 concentration in the range of 0.025-10 μM was obtained. As low as 14 nM H2O2 can be sensitively detected by using the proposed method. The relative standard deviation for 5, 1 and 0.25 μM H2O2 was 2.58%, 5.16% and 4.66%, respectively. By combining the glucose oxidase (GOx)-catalyzed oxidation reaction, CL detection of glucose was realized. The linear range of glucose detection was 0.1-30 μM with a detection limit of 0.06 μM. The proposed method has been applied to the detection of glucose in diluted serum.

摘要

在本研究中,我们发现碘酚蓝可以增强鲁米诺-H2O2 体系的弱化学发光(CL)。借助 CL 光谱、电子自旋共振(ESR)光谱测量以及对各种自由基清除剂对碘酚蓝增强鲁米诺-H2O2 体系的影响的研究,我们推测碘酚蓝可能与 H2O2 和氧气反应,生成 OH(•) 和 O2(•-)等氧化自由基物种,从而形成 1O2。生成的 1O2 可能与鲁米诺阴离子反应生成不稳定的内过氧化物,随后生成 3-氨基邻苯二甲酸酯*(3-APA*)。当激发态 3-APA 回到基态时,会观察到增强的 CL。基于碘酚蓝对 H2O2 的催化活性与 H2O2 浓度的关系,建立了一种用于测定 H2O2 的廉价、简单、灵敏的 CL 分析方法。在最佳实验条件下,相对 CL 强度与 0.025-10 μM 范围内 H2O2 浓度之间呈线性关系。该方法对 14 nM 的 H2O2 具有较高的灵敏度。对于 5、1 和 0.25 μM H2O2,相对标准偏差分别为 2.58%、5.16%和 4.66%。通过结合葡萄糖氧化酶(GOx)催化氧化反应,实现了 CL 对葡萄糖的检测。葡萄糖的检测线性范围为 0.1-30 μM,检测限为 0.06 μM。该方法已应用于稀释血清中葡萄糖的检测。

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