Quantitative analysis of 2,4-dichlorophenoxyacetic acid in water samples by two immunosensing methods

被引:34
作者
Wittmann, C
Bier, FF
Eremin, SA
Schmid, RD
机构
[1] University of Stuttgart, Institute for Technical Biochemistry, 70569 Stuttgart
[2] Max-Delbruck-Ctr. Molec. Med. B., 13122 Berlin-Buch
[3] Immunotech, Division of Chemical Enzymology, M. V. Lomonosov Moscow University
关键词
2,4-dichlorophenoxyacetic acid (2,4-D); fiber optic immunosensor; flow injection immunoanalysis (FIIA); herbicide; immunoassay; immunosensor; monoclonal antibodies; pesticide; water samples;
D O I
10.1021/jf950226z
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Two sensitive methods based on a monoclonal anti-2,4-dichlorophenoxyacetic acid (2,4-D) antibody, a now injection immunoanalysis (FIlA), and a fiber optic immunosensor are described and evaluated for the quantitative determination of 2,4-D in water samples. Detection limits for 2,4-D of similar to 0.03 mu g/L with FIIA and 0.2 mu g/L with the fiber optic immunosensor can be achieved, i.e. well below the maximum concentration permitted, in the case of FIIA, by the EC Drinking Water Directives of 0.1 mu g/L. The midpoints of the 2,4-D test are found at concentrations of 0.3 mu g/L with FIIA and 10 mu g/L with the fiber optic immunosensor. Measurable concentrations range from 0.03 to 3 mu g/L with FIIA and from 0.2 to 100 mu g/L with the fiber optic immunosensor. The FILA did not require concentration or cleanup steps for ground and surface water samples. In addition, validation experiments with GC/MS showed a good correlation of the data for the FIIA system. However, both tests can be applied as alarm systems for monitoring potential 2,4-D contamination in environmental water samples.
引用
收藏
页码:343 / 350
页数:8
相关论文
共 27 条
[1]  
AHMED AW, 1989, J ASSOC OFF ANA CHEM, V72, P365
[2]   PESTICIDE-RESIDUES IN DRINKING-WATER IN THE NORTH COAST REGION OF NEW SOUTH-WALES, AUSTRALIA, 1986-87 [J].
ANG, C ;
MELEADY, K ;
WALLACE, L .
BULLETIN OF ENVIRONMENTAL CONTAMINATION AND TOXICOLOGY, 1989, 42 (04) :595-602
[3]   REAL-TIME ANALYSIS OF COMPETITIVE-BINDING USING GRATING COUPLER IMMUNOSENSORS FOR PESTICIDE DETECTION [J].
BIER, FF ;
SCHMID, RD .
BIOSENSORS & BIOELECTRONICS, 1994, 9 (02) :125-130
[4]   USE OF A FIBER OPTIC IMMUNOSENSOR FOR THE DETECTION OF PESTICIDES [J].
BIER, FF ;
STOCKLEIN, W ;
BOCHER, M ;
BILITEWSKI, U ;
SCHMID, RD .
SENSORS AND ACTUATORS B-CHEMICAL, 1992, 7 (1-3) :509-512
[5]   UTILIZATION OF SOLID-PHASE EXTRACTION AND REVERSED-PHASE AND ION-PAIR CHROMATOGRAPHY IN THE ANALYSIS OF 7 AGROCHEMICALS IN WATER [J].
BOGUS, ER ;
WATSCHKE, TL ;
MUMMA, RO .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1990, 38 (01) :142-144
[6]  
COHEN DB, 1986, EVALUATION PESTICIDE, P328
[7]  
COHEN SZ, 1990, GROUND WATER MON WIN
[8]   FOCUS ON TOXICOLOGICAL ASPECTS OF PESTICIDE CHEMICAL INTERACTION IN DRINKING-WATER CONTAMINATION [J].
COVA, D ;
MOLINARI, GP ;
ROSSINI, L .
ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, 1990, 20 (03) :234-240
[9]   AGAROSE DERIVATIVES FOR PURIFICATION OF PROTEIN BY AFFINITY CHROMATOGRAPHY [J].
CUATRECASAS, P .
NATURE, 1970, 228 (5278) :1327-+
[10]   GAS-CHROMATOGRAPHY WITH ION TRAP DETECTION TO DETERMINE 6 HERBICIDES IN ATMOSPHERIC SAMPLES [J].
DEBEER, PR ;
SANDMANN, ERIC ;
VANDYK, LP .
ANALYST, 1989, 114 (12) :1641-1645