Enzyme-Based Fluorescent Biosensors and Their Environmental, Clinical and Industrial Applications

被引:23
作者
Klos-Witkowska, Aleksandra [1 ]
机构
[1] Univ Bielsko Biala, Fac Electrotech & Automat, Dept Mech Engn & Comp Sci, PL-43309 Bielsko Biala, Poland
来源
POLISH JOURNAL OF ENVIRONMENTAL STUDIES | 2015年 / 24卷 / 01期
关键词
biosensor; enzyme; fluorescence; analyte; recognition; ELECTROCHEMICAL BIOSENSORS; PROTOPORPHYRIN IX; CANCER; PROTEIN; FUTURE; CLASSIFICATION; IMMUNOASSAY; SENSORS; SURFACE; GREEN;
D O I
10.15244/pjoes/28352
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Enzyme-based fluorescence biosensors and their applications in environmental protection, medicine, and industry are described. Biosensors used in environmental protection measure toxicity effects. A chemical compound or group of compounds is detected by the recognition of molecules in the receptor layer and then by detecting a signal passing through the transducer layer. Biosensors are classified according to the transduction method. Special emphasis is placed on optical biosensors, especially fluorescent biosensors, and such measurement techniques as FRET (Froster resonance energy transfer), FLIM (fluorescence lifetime imaging), FCS (fluorescence correlation spectroscopy), and changes in fluorescence intensity. The phenomenon of fluorescence in biosensors and the selection of appropriate methods are described. The use of enzymes in the receptor layer and enzyme classification according to its category and functions used for analyte detection are presented. The fluorescence properties of enzymes resulting from possessing such cofactors as flavin or heme (prosthetic) groups are discussed. Several methods for enzyme immobilization, namely entrapment, adsorption, covalent immobilization, cross linking, and affinity interaction are described, and the use of enzymatic fluorescence biosensors in the detection of analytes is presented.
引用
收藏
页码:19 / 25
页数:7
相关论文
共 78 条
[1]   Novel fiber-optic biosensor based on immobilized glutathione S-transferase and sol-gel entrapped bromcresol green for the determination of atrazine [J].
Andreou, VG ;
Clonis, YD .
ANALYTICA CHIMICA ACTA, 2002, 460 (02) :151-161
[2]   Stable expression of FRET biosensors: A new light in cancer research [J].
Aoki, Kazuhiro ;
Komatsu, Naoki ;
Hirata, Eishu ;
Kamioka, Yuji ;
Matsuda, Michiyuki .
CANCER SCIENCE, 2012, 103 (04) :614-619
[3]  
Bartoszcze Michal, 2003, Przegl Epidemiol, V57, P369
[4]  
BERG J., 2010, BIOCHEMISTRY-US, P301
[5]  
Ramírez NB, 2009, BRAZ J CHEM ENG, V26, P227, DOI 10.1590/S0104-66322009000200001
[6]   Fluorescent Sensors for the Detection of Chemical Warfare Agents [J].
Burnworth, Mark ;
Rowan, Stuart J. ;
Weder, Christoph .
CHEMISTRY-A EUROPEAN JOURNAL, 2007, 13 (28) :7828-7836
[7]   Using a deoxyribozyme ligase and rolling circle amplification to detect a non-nucleic acid analyte, ATP [J].
Cho, EJ ;
Yang, LT ;
Levy, M ;
Ellington, AD .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2005, 127 (07) :2022-2023
[8]   Non-linear fluorescence lifetime imaging of biological tissues [J].
Cicchi, Riccardo ;
Pavone, Francesco Saverio .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2011, 400 (09) :2687-2697
[9]   Enzyme fluorescence as a sensing tool: new perspectives in biotechnology [J].
D'Auria, S ;
Lakowicz, JR .
CURRENT OPINION IN BIOTECHNOLOGY, 2001, 12 (01) :99-104
[10]   Recent advances in biosensor based endotoxin detection [J].
Das, A. P. ;
Kumar, P. S. ;
Swain, S. .
BIOSENSORS & BIOELECTRONICS, 2014, 51 :62-75