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用于高效液相色谱的发光二极管荧光检测器的构建及其在L-3-羟基丁酸荧光测定中的应用。

Construction of a light-emitting diode fluorescence detector for high-performance liquid chromatography and its application to fluorometric determination of L-3-hydroxybutyrate.

作者信息

Chen Chien-Ming, Lee Jen-Ai, Huang Tzu-Chuan

机构信息

Department of Electro-Optical Engineering, National Taipei University of Technology, No. 1, Sec. 3, Chung-Hsiao E. Rd, Taipei 106, Taiwan.

出版信息

Biomed Chromatogr. 2012 Feb;26(2):256-60. doi: 10.1002/bmc.1655. Epub 2011 May 19.

DOI:10.1002/bmc.1655
PMID:21594881
Abstract

This study employed a new light source, a light-emitting diode (LED), for fluorescence detection of high-performance liquid chromatography to measure the concentration of trace constituents in biological fluids. Using l-3-hydroxybutyrate ( l-3HB) as a tested trace compound, the function of the new system was compared with that of the current commercially available model. A detailed schematic diagram of the path of the detection rays in the LED detector is given. A voltage-stabilizer for the drive circuit was designed with an input of 10 V and an output of 8 V, and another voltage regulator was used to maintain a constant 8 V. Then the regulator was used to set the output voltage for the LED at 2.8 V by two external resistors. Replacing the xenon lamp with LED, this system provided higher photon density and a narrow spectrum at a wavelength of 491 nm. At room temperature (22.1°C), the average temperature of six places in the chamber of LED detector was 22.1°C compared with 51.1°C in the xenon detector. The spectra of the excitation light sources were measured. Compared with the xenon lamp, approximately 1.32 times higher excitation intensity was obtained by the LED source. The accuracy of detection of l-3HB in 50 μL of rat serum was 99.85-100.85%, and the intra-day and inter-day precision values were within 8.99 and 13.90%, respectively. The limit of detection of l-3HB was approximately 0.73 µM (signal-to-noise ratio 3). The sensitivity of the proposed LED detector was comparable to that of traditional fluorescence detectors using xenon arc lamps; however, the cost and operating temperature of LED lamps were far lower. This assay system could be further used to detect trace constituents in various samples.

摘要

本研究采用一种新型光源——发光二极管(LED),用于高效液相色谱的荧光检测,以测量生物体液中痕量成分的浓度。以l-3-羟基丁酸(l-3HB)作为测试痕量化合物,将新系统的功能与当前市售型号的功能进行了比较。给出了LED检测器中检测光线路径的详细示意图。设计了一个驱动电路的稳压器,输入为10 V,输出为8 V,并使用另一个电压调节器来维持8 V的恒定电压。然后通过两个外部电阻将调节器用于将LED的输出电压设置为2.8 V。用LED取代氙灯后,该系统在491 nm波长处提供了更高的光子密度和更窄的光谱。在室温(22.1°C)下,LED检测器腔室内六个位置的平均温度为22.1°C,而氙检测器中的平均温度为51.1°C。测量了激发光源的光谱。与氙灯相比,LED光源获得的激发强度高出约1.32倍。50 μL大鼠血清中l-3HB的检测准确度为99.85 - 100.85%,日内和日间精密度值分别在8.99%和13.90%以内。l-3HB的检测限约为0.73 μM(信噪比为3)。所提出的LED检测器的灵敏度与使用氙弧灯的传统荧光检测器相当;然而,LED灯的成本和工作温度要低得多。该检测系统可进一步用于检测各种样品中的痕量成分。

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