Journal of the American Oil Chemists Society · 2001 · 74 citations · 26 references
Lipid AnalysisEngineeringOrganic ChemistryChemistryVegetable OilFood ChemistryLipophilic AldehydesAnalytical ChemistryHeated Soybean OilLiquid ChromatographyChromatographyHealth SciencesBiochemistrySoybean OilReversed‐phase HplcLipidsChromatographic AnalysisFood PreservativesPharmacologyHigh‐performance Liquid ChromatographyLipid Chemistry
Abstract A very sensitive high‐performance liquid chromatography (HPLC) method was developed for the simultaneous separation and measurement of nonpolar and polar lipophilic secondary lipid peroxidation products in vegetable oil. Seventeen nonpolar and 13 polar lipophilic aldehydes and related carbonyl compounds, derived from thermally oxidized soybean oil as 2,4‐dinitrophenyl hydrazones, were separated simultaneously by reversed‐phase HPLC. Detection limit for the individual compounds is 1 ng. Thirteen of the nonpolar carbonyl compounds were identified as: butanal, 2‐butanone, pentanal, 2‐pentanone, hexenal, hexanal, 2,4‐heptadienal, 2‐heptenal, octanal, 2‐nonenal, 2,4‐decadienal, decanal, and undecanal. Three of the polar carbonyl compounds were identified as: 4‐hydroxy‐2‐hexenal, 4‐hydroxy‐2‐octenal, and 4‐hydroxy‐2‐nonenal. The detection of the toxic 4‐hydroxy‐2‐nonenal, a major compound, and 4‐hydroxy‐2‐hexenal, a minor compound, in heated soybean oil is of particular importance because these toxic compounds have been shown to be absorbed from the diet.
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Martin Grootveld, Martin Atherton, A N Sheerin et al. · Journal of Clinical Investigation · 1998 · 152 citations · Full text
Urinary Excretion, Lipid Peroxidation, Rich Culinary Oils +21
Free Radicals, Lipid Peroxidation and Cancer
John M.C. Gutteridge · FEBS Letters · 1982 · 134 citations · Full text
Lipid Peroxidation, Free Radicals, Reactive Oxygen Specie +4