2025/06/29 by Berger, Marion, Deharde, Max, Neuhoff, Judith +5
#(1R #(2S)-2-[[(3R)-5-Chlor-8-hydroxy-3-methyl-1-oxo-3 #(2S)-2-[[(3R)-5-Chloro-8-hydroxy-3-methyl-1-oxo-3 #(3R #(3R)-5-Chlor-8-hydroxy-3-methyl-1-oxo-3 #(3R)-5-Chloro-8-hydroxy-3-methyl-1-oxo-3 #(3S #11 #11R)-7-Hydroxy-11-(hydroxymethyl)-15-methyl-12 #13(17)-pentaen-16 #13(17)-pentaene-16 #13(17)-tetraen-16 #13(17)-tetraene-16 #13(18)-pentaen-17 #13(18)-pentaene-17 #13(18)-tetraen-17 #13(18)-tetraene-17 #13-dithia-9 #14-dion #14-dione #15-diazatetracyclo[9.2.2.01 #16 #17]nonadeca-1 #18-dion #18-dione #18]icosa-1 #19-dion #19-dione #19-trioxapentacyclo[10.7.0.02 #20-tetraoxapentacyclo[10.8.0.02 #4 #4-Hydroxyaflatoxin B1 #4-dihydroisochromen-7-carbonsäure #4-dihydroisochromen-7-carbonyl]amino]-3-phenylpropansäure #4-dihydroisochromene-7-carbonyl]amino]-3-phenylpropanoic acid #4-dihydroisochromene-7-carboxylic acid #4S)-6 #4S)-6-Hydroxy-3 #5-dien-10 #5-diene-10 #5-trimethyl-1-oxo-3 #5-trimethyl-8-oxo-3 #543 Analytical chemistry #543 Analytische Chemie #571.95 Toxicology #571.95 Toxikologie #616.9803 Betriebs- und Arbeitsmedizin #616.9803 Industrial and occupational medicine #7.013 #7R)-11-Methoxy-6 #7R)-3-Hydroxy-11-methoxy-6 #7S #8 #8-Dihydroxy-3 #8S #8]pentadeca-3 #9 #9.03 #AFB1 #AFB2 #AFG1 #AFG2 #AFM1 #Aflatoxin B1 #Aflatoxin B2 #Aflatoxin G1 #Aflatoxin G2 #Aflatoxin M1 #Aflatoxine #Aflatoxins #Allgemeinbevölkerung #Analysen in biologischem Material #Analysenmethode #Analyses in Biological Materials #Arbeiter #Arbeitnehmer #Arbeitsplatz #Arbeitsplatzbelastung #Aspergillin #Biomonitoring #Biomonitoringmethode #CIT #Citrinin #DH-CIT #Dihydrocitrinon #Dihydrocitrinone #Flüssigkeitschromatographie mit Tandem-Massenspektrometrie #GT #Gliotoxin #HBM #Hintergrundbelastung #Humanbiomonitoring #Intoxikation #LC-MS/MS #Methode #Mykotoxine #OTA #OTα #Ochratoxin A #Ochratoxin α #Schimmelpilzgift #Umweltbelastung #Urin #Vergiftung #analytical method #background exposure #biological monitoring #biologisches Monitoring #biomonitoring #biomonitoring method #employee #environmental exposure #general population #human biomonitoring #intoxication #liquid chromatography with tandem mass spectrometry #method #mould toxin #mycotoxins #poisoning #urine #worker #workplace #workplace exposure
paper · doi:10.34865/bi116265e10_2or
The working group “Analyses in Biological Materials” of the German Senate Commission for the Investigation of Health Hazards of Chemical Compounds in the Work Area (MAK Commission) developed and verified the presented biomonitoring method. The aim of this method is the selective and sensitive quantitation of aflatoxins (aflatoxins B1, B2, G1, G2, M1), ochratoxin A (OTA), free ochratoxin α (OTα), gliotoxin (GT), citrinin (CIT) and dihydrocitrinone (DH‑CIT) in urine. Sample preparation comprises enrichment and purification of the analytes by solid-phase extraction using OASIS HLB cartridges. Calibration is performed with comparative standards prepared in pooled urine and treated analogously to the samples to be analysed. The aflatoxins, OTA, CIT, and DH‑CIT are quantified using isotope-labelled internal standards (ISTDs), whereas OTα and GT are quantified without an ISTD. Determination is carried out by high-performance liquid chromatography-tandem mass spectrometry (LC‑MS/MS). The method provides reliable and accurate analytical results, as shown by the good precision data with standard deviations below 9% for the aflatoxins, OTα, GT and CIT, below 13% for OTA, and below 20% for DH‑CIT. Good accuracy data were obtained with mean relative recoveries in the range of 93–107% for the aflatoxins, OTα, GT and CIT, in the range of 83–103% for OTA, and in the range of 81–108% for DH‑CIT. The method is both selective and sensitive, and has quantitation limits in the range of 0.013–0.022 μg/l for the aflatoxins and OTA and a quantitation limit of 1.0 μg/l for OTα, 1.5 μg/l for GT, 0.0075 μg/l for CIT, and 0.01 μg/l for DH‑CIT.