Determination of Five Phthalate Monoesters in Human Urine Using Gas Chromatography-Mass Spectrometry
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作者:
Fumio Kondo
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机构:Aichi Prefectural Institute of Public Health,Department of Toxicology
Fumio Kondo
Yoshitomo Ikai
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机构:Aichi Prefectural Institute of Public Health,Department of Toxicology
Yoshitomo Ikai
Rumiko Hayashi
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机构:Aichi Prefectural Institute of Public Health,Department of Toxicology
Rumiko Hayashi
Masanao Okumura
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机构:Aichi Prefectural Institute of Public Health,Department of Toxicology
Masanao Okumura
Satoshi Takatori
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机构:Aichi Prefectural Institute of Public Health,Department of Toxicology
Satoshi Takatori
Hiroyuki Nakazawa
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机构:Aichi Prefectural Institute of Public Health,Department of Toxicology
Hiroyuki Nakazawa
Shun-ichiro Izumi
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机构:Aichi Prefectural Institute of Public Health,Department of Toxicology
Shun-ichiro Izumi
Tsunehisa Makino
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机构:Aichi Prefectural Institute of Public Health,Department of Toxicology
Tsunehisa Makino
机构:
[1] Aichi Prefectural Institute of Public Health,Department of Toxicology
[2] Osaka Prefectural Institute of Public Health,Division of Food Chemistry
[3] Hoshi University,Department of Analytical Chemistry
[4] Tokai University,Department of Obstetrics and Gynecology, School of Medicine
[5] Aichi Medical University,Department of Pharmacology, School of Medicine
来源:
Bulletin of Environmental Contamination and Toxicology
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2010年
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85卷
关键词:
Phthalate monoesters;
Exposure;
Urine;
Gas chromatography-mass spectrometry;
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摘要:
We have developed a gas chromatography-mass spectrometry (GC–MS) method to determine five phthalate monoesters (monoethyl phthalate (MEP), mono-n-butyl phthalate (MBP), mono-(2-ethylhexyl) phthalate (MEHP), monoisononyl phthalate (MINP) and monobenzyl phthalate (MBz)) in human urine. Human urine samples were subjected to enzymatic deconjugation of the glucuronides followed by extraction with hexane. The extracted phthalate monoesters were methylated with diazomethane, purified on a Florisil column and then subjected to GC–MS analysis. The recoveries from urine spiked with five phthalate monoesters were 86.3%–119% with coefficients of variation of 0.6%–6.1%. We measured phthalate monoester levels in human urine by analyzing 36 samples from volunteers. MBP and MEP were detected in all samples, and their median concentrations were 60.0 and 10.7 ng/mL, respectively. MBzP and MEHP were found in 75% and 56% of samples, and their median concentrations were 10.9 and 5.75 ng/mL, respectively. MINPs were not detected in most samples (6% detectable). Women had significantly (p < 0.05) higher mean concentrations of MBP and MEP than men. The estimated daily exposure levels for the four parent phthalates excluding diisononyl phthalate ranged from 0.27 to 5.69 μg/kg/day (median).