TY - JOUR
T1 - High throughput HPLC-ESI--MS/MS methodology for mercapturic acid metabolites of 1,3-butadiene
T2 - Biomarkers of exposure and bioactivation
AU - Kotapati, Srikanth
AU - Esades, Amanda
AU - Matter, Brock
AU - Le, Chap
AU - Tretyakova, Natalia
N1 - Publisher Copyright:
© 2015 Elsevier Ireland Ltd.
PY - 2015/11/5
Y1 - 2015/11/5
N2 - 1,3-Butadiene (BD) is an important industrial and environmental carcinogen present in cigarette smoke, automobile exhaust, and urban air. The major urinary metabolites of BD in humans are 2-(N-acetyl-l-cystein-S-yl)-1-hydroxybut-3-ene/1-(N-acetyl-l-cystein-S-yl)-2-hydroxybut-3-ene (MHBMA), 4-(N-acetyl-l-cystein-S-yl)-1,2-dihydroxybutane (DHBMA), and 4-(N-acetyl-l-cystein-S-yl)-1,2,3-trihydroxybutyl mercapturic acid (THBMA), which are formed from the electrophilic metabolites of BD, 3,4-epoxy-1-butene (EB), hydroxymethyl vinyl ketone (HMVK), and 3,4-epoxy-1,2-diol (EBD), respectively. In the present work, a sensitive high-throughput HPLC-ESI--MS/MS method was developed for simultaneous quantification of MHBMA and DHBMA in small volumes of human urine (200 μl). The method employs a 96 well Oasis HLB SPE enrichment step, followed by isotope dilution HPLC-ESI--MS/MS analysis on a triple quadrupole mass spectrometer. The validated method was used to quantify MHBMA and DHBMA in urine of workers from a BD monomer and styrene-butadiene rubber production facility (40 controls and 32 occupationally exposed to BD). Urinary THBMA concentrations were also determined in the same samples. The concentrations of all three BD-mercapturic acids and the metabolic ratio (MHBMA/(MHBMA + DHBMA + THBMA)) were significantly higher in the occupationally exposed group as compared to controls and correlated with BD exposure, with each other, and with BD-hemoglobin biomarkers. This improved high throughput methodology for MHBMA and DHBMA will be useful for future epidemiological studies in smokers and occupationally exposed workers.
AB - 1,3-Butadiene (BD) is an important industrial and environmental carcinogen present in cigarette smoke, automobile exhaust, and urban air. The major urinary metabolites of BD in humans are 2-(N-acetyl-l-cystein-S-yl)-1-hydroxybut-3-ene/1-(N-acetyl-l-cystein-S-yl)-2-hydroxybut-3-ene (MHBMA), 4-(N-acetyl-l-cystein-S-yl)-1,2-dihydroxybutane (DHBMA), and 4-(N-acetyl-l-cystein-S-yl)-1,2,3-trihydroxybutyl mercapturic acid (THBMA), which are formed from the electrophilic metabolites of BD, 3,4-epoxy-1-butene (EB), hydroxymethyl vinyl ketone (HMVK), and 3,4-epoxy-1,2-diol (EBD), respectively. In the present work, a sensitive high-throughput HPLC-ESI--MS/MS method was developed for simultaneous quantification of MHBMA and DHBMA in small volumes of human urine (200 μl). The method employs a 96 well Oasis HLB SPE enrichment step, followed by isotope dilution HPLC-ESI--MS/MS analysis on a triple quadrupole mass spectrometer. The validated method was used to quantify MHBMA and DHBMA in urine of workers from a BD monomer and styrene-butadiene rubber production facility (40 controls and 32 occupationally exposed to BD). Urinary THBMA concentrations were also determined in the same samples. The concentrations of all three BD-mercapturic acids and the metabolic ratio (MHBMA/(MHBMA + DHBMA + THBMA)) were significantly higher in the occupationally exposed group as compared to controls and correlated with BD exposure, with each other, and with BD-hemoglobin biomarkers. This improved high throughput methodology for MHBMA and DHBMA will be useful for future epidemiological studies in smokers and occupationally exposed workers.
KW - 1 3-Butadiene
KW - Metabolism
KW - Occupational exposure
KW - Quantitative analysis
KW - Urinary metabolites
UR - https://www.scopus.com/pages/publications/84947493495
UR - https://www.scopus.com/inward/citedby.url?scp=84947493495&partnerID=8YFLogxK
U2 - 10.1016/j.cbi.2015.02.009
DO - 10.1016/j.cbi.2015.02.009
M3 - Article
C2 - 25727266
AN - SCOPUS:84947493495
SN - 0009-2797
VL - 241
SP - 23
EP - 31
JO - Chemico-Biological Interactions
JF - Chemico-Biological Interactions
ER -