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多探头光纤倏逝波生物传感器及其性能研究
引用本文:黄惠杰,翟俊辉,赵永凯,杨瑞馥,任冰强,程兆谷,杜龙龙,路敦武.多探头光纤倏逝波生物传感器及其性能研究[J].中国激光,2004,31(6):18-722.
作者姓名:黄惠杰  翟俊辉  赵永凯  杨瑞馥  任冰强  程兆谷  杜龙龙  路敦武
作者单位:1. 中国科学院上海光学精密机械研究所,上海,201800
2. 军事医学科学院微生物流行病研究所,北京,100071
摘    要:利用光纤倏逝波原理,以输出波长为635 nm的半导体激光器为光源,研制成功一台具有5个探头的光纤生物传感器.该传感器5个光纤探头对纯净Cy5荧光染料溶液的检测灵敏度均达0.01 nmol/L,在同一浓度下信噪比的相对标准偏差小于10%,5个探头的信噪比曲线几乎重合,且与商品化生物芯片扫描仪同时检测得到的结果一致;检测到了抗原抗体特异性反应的动态过程.本传感器具有较高的检测灵敏度、良好的响应一致性和生物特异性,可用于多重生物物质的检测.

关 键 词:传感器技术  光学计量  生物传感器  倏逝波  蛋白质  实时荧光检测
收稿时间:2003/2/19

Multi-Probe Fiber-Optic Evanescent Wave Biosensor and Its Characterization
HUANG Hui-jie,ZHAI Jun-hui,ZHAO Yong-kai,YANG Rui-fuREN Bing-qiang,CHENG Zhao-gu,DU Long-long,LU Dun-wu.Multi-Probe Fiber-Optic Evanescent Wave Biosensor and Its Characterization[J].Chinese Journal of Lasers,2004,31(6):18-722.
Authors:HUANG Hui-jie  ZHAI Jun-hui  ZHAO Yong-kai  YANG Rui-fuREN Bing-qiang  CHENG Zhao-gu  DU Long-long  LU Dun-wu
Affiliation:HUANG Hui-jie1,ZHAI Jun-hui2,ZHAO Yong-kai1,YANG Rui-fu2REN Bing-qiang1,CHENG Zhao-gu1,DU Long-long1,LU Dun-wu1 1Shanghai Institute of Optics and Fine Mechanics,The Chinese Academy of Sciences,Shanghai 201800,China 2Institute of Microbiology and Epidemiology,Academy of Military Medical Sciences,Beijing 100071,China
Abstract:A multi-probe fiber-optic evanescent wave biosensor has been developed based on the principle of evanescent wave while light propagates along optical fiber. A laser diode at 635 nm wavelength is used as the light source. The biosensor can interrogate five individual fibers at one time. Thus assays for five separate analytes can be conducted on the same sample. For all the five fibers, sensitivity limit of 0.01 nmol/L is obtained from the detection of Cy5 serial solutions with various concentrations. The response curves of five fibers have good consistency, the relative standard deviation is less than 10%. All the results are comparable with those that are obtained by a commercial biochip scanner. Real-time fluorescence of human IgG binding to goat anti-body IgG antibody immobilized on fiber core has been successfully detected.
Keywords:sensor technology  optical metrology  biosensor  evanescent wave  protein  real-time fluorescence detection
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