Non-Enzymatic and Electrodeless Detection of Direct Bilirubin Using Metal Enhanced Fluorescence Effect

Cheng-Yi Li, Changde Peng, S. Hsu, Cheng-Chung Chang, Gou-Jen Wang
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Abstract

In this study, a metal enhanced fluorescence (MEF) approach using the homemade Ag nanowires for enzyme free and electrodeless detection of direct bilirubin (d-BLR) was successfully developed. The average diameter and length of the fabricated Ag nanowires were measured to be around 80 nm and 25 μm, respectively. Solvent effect experiments found that EtOH is more suitable as the solvent for d-BLR. The experimental results found that the linear detection range is from 1 to 10 μM, which can be used for detecting abnormal d-BLR concentration from 5 to 10 μM. The MEF approach not only enhanced the bilirubin fluorescence, but also improved the linearity of the standard curve. Furthermore, we also found that the fluorescence intensity of the chip-based MEF is much higher than that of the solution-based MEF. It is believed that the proposed enzyme free and electrodeless d-BLR detection platform is highly feasible for clinical applications.
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金属增强荧光效应直接检测胆红素的非酶法和无极法
本研究成功建立了一种金属增强荧光(MEF)方法,用于无酶和无电极检测直接胆红素(d-BLR)。制备的银纳米线的平均直径约为80 nm,长度约为25 μm。溶剂效应实验发现,EtOH更适合作为d-BLR的溶剂。实验结果表明,线性检测范围为1 ~ 10 μM,可用于检测5 ~ 10 μM的d-BLR异常浓度。MEF法不仅增强了胆红素荧光,而且提高了标准曲线的线性度。此外,我们还发现基于芯片的MEF的荧光强度远远高于基于溶液的MEF。认为该无酶无极d-BLR检测平台具有较高的临床应用价值。
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