Determination of residues of endosulfan in human blood by a negative ion chemical ionization gas chromatographic/mass spectrometric method: impact of long-term aerial spray exposure

被引:6
|
作者
Ramesh, A [1 ]
Ravi, PE [1 ]
机构
[1] Int Inst Biotechnol & Toxicol, Dept Pesticide Chem, IIBAT, Madras 601301, Tamil Nadu, India
关键词
analysis; endosulfan; isomers; metabolites; blood; residues; environmental exposure;
D O I
10.1002/ps.628
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
A new and sensitive analytical method using negative ion chemical ionization gas chromatography/mass spectrometry in selective ion monitoring (SIM) mode has been developed for the determination of residues of endosulfan in the human blood. The residues of endosulfan are extracted from whole blood samples without separating the serum by the addition of 60% sulfuric acid at 10degreesC followed by partition with hexane+acetone (9+1 by volume). The total endosulfan is quantified as the sum of alpha-endosulfan, beta-endosulfan and endosulfan sulfate in SIM mode. The mass-fragment ions used for this purpose that are monitored for in SIM mode include endosulfan diol: 95, 169, 214, 313, alpha-endosulfan: 99, 242, 270, 406, beta-endosulfan: 99, 242, 270, 406, and endosulfan sulfate: 97, 353, 386. Recovery experiments were conducted at the concentration range 1.0-100 pg ml(-1). Results showed 112-98% recovery of total endosulfan from the whole blood samples. The relative standard deviation was 1.49-2.68%. The method was found to be highly sensitive in quantifying endosulfan residues down to the 0.1 pg ml(-1) level. Conversion of endosulfan to endosulfan diol was found to be less than 0.1% under the conditions used. The results were compared with published data. The applications of the analytical method for the determination of endosulfan residues in real samples was tested by analyzing 106 human blood samples collected from a population living in Padre village, Kasargode District, Kerala, India, where aerial spraying of endosulfan has been a common agricultural practice over the years. The results showed that none of the blood samples contained residues of endosulfan (alpha-endosulfan+beta-endosulfan+endosulfan sulfate) or endosulfan diol. The results were confirmed by the detection of the appropriate amounts in a number of these samples which had subsequently been spiked with endosulfan. (C) 2003 Society of Chemical Industry.
引用
收藏
页码:252 / 258
页数:7
相关论文
共 50 条
  • [1] Negative ion chemical ionization-gas chromatographic-mass spectrometric determination of residues of different pyrethroid insecticides in whole blood and serum
    Ramesh, A
    Ravi, PE
    JOURNAL OF ANALYTICAL TOXICOLOGY, 2004, 28 (08) : 660 - 666
  • [2] Quantitative gas chromatographic/mass spectrometric analysis of morphine glucuronides in human plasma by negative ion chemical ionization mass spectrometry
    Leis, HJ
    Fauler, G
    Raspotnig, G
    Windischhofer, W
    JOURNAL OF MASS SPECTROMETRY, 2002, 37 (04): : 395 - 400
  • [3] Validated gas chromatographic-negative ion chemical ionization mass spectrometric method for Δ9-tetrahydrocannabinol in sweat patches
    Saito, T
    Wtsadik, A
    Scheidweiler, KB
    Fortner, N
    Takeichi, S
    Huestis, MA
    CLINICAL CHEMISTRY, 2004, 50 (11) : 2083 - 2090
  • [4] DETERMINATION OF THE BETA-BLOCKER CARTEOLOL IN HUMAN PLASMA BY A SENSITIVE GAS CHROMATOGRAPHIC-NEGATIVE-ION CHEMICAL-IONIZATION HIGH-RESOLUTION MASS-SPECTROMETRIC METHOD
    NAGASAWA, M
    KASHIMOTO, M
    SUGAWARA, M
    KIMURA, Y
    JOURNAL OF CHROMATOGRAPHY B-BIOMEDICAL APPLICATIONS, 1995, 673 (02): : 294 - 298
  • [5] Gas chromatographic determination of pesticides in vegetable samples by sequential positive and negative chemical ionization and tandem mass spectrometric fragmentation using an ion trap analyser
    Hernando, MD
    Agüera, A
    Fernández-Alba, AR
    Piedra, L
    Contreras, M
    ANALYST, 2001, 126 (01) : 46 - 51
  • [6] Gas chromatographic–mass spectrometric analysis of the tripeptide glutathione in the electron-capture negative-ion chemical ionization mode
    Dimitrios Tsikas
    Erik Hanff
    Arslan Arinc Kayacelebi
    Anke Böhmer
    Amino Acids, 2016, 48 : 593 - 598
  • [7] Drug testing in blood: Validated negative-ion chemical ionization gas chromatographic-mass spectrometric assay for determination of amphetamine and methamphetamine enantiomers and its application to toxicology cases
    Peters, FT
    Kraemer, T
    Maurer, HH
    CLINICAL CHEMISTRY, 2002, 48 (09) : 1472 - 1485
  • [8] Gas chromatographic-mass spectrometric analysis of the tripeptide glutathione in the electron-capture negative-ion chemical ionization mode
    Tsikas, Dimitrios
    Hanff, Erik
    Kayacelebi, Arslan Arinc
    Boehmer, Anke
    AMINO ACIDS, 2016, 48 (02) : 593 - 598
  • [9] Performance evaluation of an in-injection port thermal desorption/gas chromatographic/negative ion chemical ionization mass spectrometric method for trace explosive vapor analysis
    Sigman, ME
    Ma, CY
    Ilgner, RH
    ANALYTICAL CHEMISTRY, 2001, 73 (04) : 792 - 798
  • [10] Gas-chromatographic determination of pig plasma malondialdehyde with negative-ion chemical ionization tandem mass spectrometry detection
    Chiesa, LM
    de Wasch, K
    Pecile, AM
    Biondi, PA
    de Brabander, H
    ARCHIV FUR LEBENSMITTELHYGIENE, 1999, 50 (02): : 41 - 43