Wu Meng, Lin Zhihong, Schäferling Michael, Dürkop Axel, Wolfbeis Otto S
Institute of Analytical Chemistry, Chemo- and Biosensors, University of Regensburg, D-93040 Regensburg, Germany.
Anal Biochem. 2005 May 1;340(1):66-73. doi: 10.1016/j.ab.2005.01.050.
A method for optical imaging of the activity of glucose oxidase (GOx) using a fluorescent europium(III) tetracycline probe for hydrogen peroxide is presented. A decay time in the microsecond range and the large Stokes shift of 210 nm of the probe facilitate intensity-based, time-resolved, and decay-time-based imaging of glucose oxidase. Four methods for imaging the activity of GOx were compared, and rapid lifetime determination imaging was found to be the best in giving a linear range from 0.32 to 2.7 m Unit/mL. The detection limit is 0.32 m Unit/mL (1.7 ng mL(-1)) which is similar to that of the time-resolved (gated) imaging using a microtiterplate reader. Fluorescent imaging of the activity of GOx is considered to be a useful tool for GOx-based immunoassays with potential for high-throughput screening, immobilization studies, and biosensor array technologies.
本文提出了一种使用用于过氧化氢的荧光铕(III)四环素探针进行葡萄糖氧化酶(GOx)活性光学成像的方法。该探针在微秒范围内的衰减时间以及210 nm的大斯托克斯位移有助于基于强度、时间分辨和基于衰减时间的葡萄糖氧化酶成像。比较了四种用于成像GOx活性的方法,发现快速寿命测定成像在给出0.32至2.7 m单位/毫升的线性范围方面是最佳的。检测限为0.32 m单位/毫升(1.7纳克/毫升(-1)),这与使用微孔板读数器进行时间分辨(门控)成像的检测限相似。GOx活性的荧光成像被认为是基于GOx的免疫测定的有用工具,具有高通量筛选、固定化研究和生物传感器阵列技术的潜力。