Food Hygiene and Safety Science/Shokuhin Eiseigaku Zasshi 2005-12-01

[Analysis of phenmedipham in agricultural products by HPLC].

Tsuyoshi Imazawa, Tomonari Iida, Nobuhiro Matsuno, Fumiaki Kato, Takeshi Ito, Kumiko Sasaki

Index: Shokuhin Eiseigaku Zasshi 46(6) , 277-81, (2005)

Full Text: HTML

Abstract

An analytical method was developed for the determination of phenmedipham (PM) in agricultural products using reversed-phase high-performance liquid chromatography with UV detection. A sample was extracted with acetonitrile, and the acetonitrile layer was separated by salting-out. The acetonitrile phase was isolated and evaporated. The extract was dissolved in diethyl ether-hexane (1 : 1), and then cleaned up on a Florisil column. The column was washed with diethyl ether-hexane (1 : 1), and PM was eluted with acetone-hexane (3 : 7), and the eluate was evaporated. The residue was dissolved in acetone-hexane (2 : 8), and the sample solution was cleaned up on SAX/PSA cartridge. The SAX/PSA cartridge was washed with acetone-hexane (2 : 8), and PM was eluted with acetone-hexane (3 : 7). If required, the eluate of the Florisil column was cleaned up with SAX/PSA and ENVI-Carb/ NH2 cartridges. The SAX/PSA cartridge was washed with acetone-hexane (2 : 8), and connected to be ENVI-Carb/NH2 cartridge. The cartridges were washed with acetone-hexane (3 : 7), and then the SAX/PSA cartridge was removed. PM was eluted with acetonitrile-toluene (3 : 1) from the ENVI-Carb/NH2 cartridge. PM in the eluate was separated isocratically on an ODS column (4.6 mm i.d. x 150 mm, 5 microm) using acetonitrile-water (6 : 4) as a mobile phase (flow-rate 1.0 mL/min, temp. 40 degrees C), with monitoring at 235 nm. The calibration curve was linear from 0.005 microg/mL to 10 microg/mL of PM. The recoveries of PM from eight kinds of agricultural products spiked at levels of 0.1 and 0.02 microg/g were 80.8-98.7%. The determination limit was 0.01 microg/g.


Related Compounds

Related Articles:

Mining biologically-active molecules for inhibitors of fatty acid amide hydrolase (FAAH): Identification of phenmedipham and amperozide as FAAH inhibitors

2009-01-01

[Bioorg. Med. Chem. Lett. 19 , 6793-6, (2009)]

The influence of lipophilicity and formulation on the distribution of pesticides in laboratory-scale sediment/water systems.

2003-02-01

[Pest Manag. Sci. 59(2) , 238-44, (2003)]

Purification and properties of an Arthrobacter oxydans P52 carbamate hydrolase specific for the herbicide phenmedipham and nucleotide sequence of the corresponding gene.

1992-10-01

[J. Bacteriol. 174(20) , 6600-7, (1992)]

Expression of a bacterial gene in transgenic plants confers resistance to the herbicide phenmedipham.

1994-09-01

[Plant Mol. Biol. 25(6) , 977-87, (1994)]

Effects of different soil types on the Collembolans Folsomia candida and Hypogastrura assimilis using the herbicide Phenmedipham.

2005-10-01

[Arch. Environ. Contam. Toxicol. 49(3) , 343-52, (2005)]

More Articles...