Shizuka Saito, Satoru Nemoto, Rieko Matsuda
Index: Shokuhin Eiseigaku Zasshi 52(4) , 237-43, (2011)
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A sensitive and selective analytical method for the determination of pindone in agricultural products by LC-MS/MS was developed. Pindone was extracted with acetone, and an aliquot of the crude extract was re-extracted with hexane. For lipid-rich samples, the crude extract was further cleaned up by acetonitrile-hexane partitioning. The extract was cleaned up on a tandem graphitized carbon-silica gel column. For brown rice, soybean, and tea, PSA column cleanup was added prior to LC-MS/MS determination. Average recoveries of pindone from brown rice, soybean, potato, spinach, cabbage, apple, orange, tomato, cucumber, and tea fortified at 0.001 mg/kg were 81-93%, and the relative standard deviations were 2-7%. The limit of quantitation (S/N ≥ 10) of the developed method was 0.001 mg/kg for all the tested agricultural products.
Structure | Name/CAS No. | Molecular Formula | Articles |
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NSC 31211
CAS:83-26-1 |
C14H14O3 |
Analysis of indandione anticoagulant rodenticides in animal ...
2008-12-05 [J. Chromatogr. A. 1213(1) , 77-82, (2008)] |
[Mutagenic effect of pindone on D. melanogaster].
1993-04-01 [Boll. Soc. Ital. Biol. Sper. 69(4) , 237-41, (1993)] |
Vitamin K and its therapeutic importance.
1982-06-01 [J. Am. Vet. Med. Assoc. 180(11) , 1354-6, (1982)] |
Assessment of the potential toxicity of a poison for rabbits...
1991-07-01 [Aust. Vet. J. 68(7) , 241-3, (1991)] |
Effect of the anticoagulant, pindone, on the breeding perfor...
2005-03-01 [Comp. Biochem. Physiol. B Biochem. Mol. Biol. 140(3) , 465-73, (2005)] |
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