Biological exposure indices of pyrrole adducts in serum and urine for hazard assessment of n-hexane exposure.

BACKGROUND: Pyrrole adducts might be used as a biomarker for monitoring occupational exposure to n-hexane, but the Biological Exposure Indices of pyrrole adducts in serum and urine are still unknown. The current study was designed to investigate the biological exposure limit of pyrrole adducts for h...

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Main Authors: Hongyin Yin, Chunling Zhang, Ying Guo, Xiaoying Shao, Tao Zeng, Xiulan Zhao, Keqin Xie
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3899213?pdf=render
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spelling doaj-e0d80e3860684ae5917bdeab717c290f2020-11-25T01:09:29ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0191e8610810.1371/journal.pone.0086108Biological exposure indices of pyrrole adducts in serum and urine for hazard assessment of n-hexane exposure.Hongyin YinChunling ZhangYing GuoXiaoying ShaoTao ZengXiulan ZhaoKeqin XieBACKGROUND: Pyrrole adducts might be used as a biomarker for monitoring occupational exposure to n-hexane, but the Biological Exposure Indices of pyrrole adducts in serum and urine are still unknown. The current study was designed to investigate the biological exposure limit of pyrrole adducts for hazard assessment of n-hexane. METHODS: Male Wistar rats were given daily dose of 500, 1000, 1500, 2000, 4000 mg/kg bw n-hexane by gavage for 24 weeks. The levels of pyrrole adducts in serum and urine were determined at 8, 24 hours postdose once a week. The Biological Exposure Indices was evaluated by neurological evaluation and the levels of pyrrole adducts. The difference in pyrrole adducts formation between humans and rats were estimated by using in vitro test. RESULTS: Dose-dependent effects were observed between the doses of n-hexane and pyrrole adducts in serum and urine, and the levels of pyrrole adduct in serum and urine approached a plateau at week 4. There was a significantly negative correlation between the time to paralysis and the level of pyrrole adducts in serum and urine, while a positive correlation between gait score and levels of pyrrole adducts in serum and urine was observed. In vitro, pyrrole adducts formed in human serum was about two times more than those in rat serum at the same level of 2,5-HD. CONCLUSION: It was concluded that the BEIs of pyrrole adducts in humans were 23.1 ± 5.91 nmol/ml in serum 8 h postdose, 11.7 ± 2.64 nmol/ml in serum 24 h postdose, 253.8 ± 36.3 nmol/ml in urine 8 h postdose and 54.6 ± 15.42 nmol/ml in urine 24 h postdose.http://europepmc.org/articles/PMC3899213?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Hongyin Yin
Chunling Zhang
Ying Guo
Xiaoying Shao
Tao Zeng
Xiulan Zhao
Keqin Xie
spellingShingle Hongyin Yin
Chunling Zhang
Ying Guo
Xiaoying Shao
Tao Zeng
Xiulan Zhao
Keqin Xie
Biological exposure indices of pyrrole adducts in serum and urine for hazard assessment of n-hexane exposure.
PLoS ONE
author_facet Hongyin Yin
Chunling Zhang
Ying Guo
Xiaoying Shao
Tao Zeng
Xiulan Zhao
Keqin Xie
author_sort Hongyin Yin
title Biological exposure indices of pyrrole adducts in serum and urine for hazard assessment of n-hexane exposure.
title_short Biological exposure indices of pyrrole adducts in serum and urine for hazard assessment of n-hexane exposure.
title_full Biological exposure indices of pyrrole adducts in serum and urine for hazard assessment of n-hexane exposure.
title_fullStr Biological exposure indices of pyrrole adducts in serum and urine for hazard assessment of n-hexane exposure.
title_full_unstemmed Biological exposure indices of pyrrole adducts in serum and urine for hazard assessment of n-hexane exposure.
title_sort biological exposure indices of pyrrole adducts in serum and urine for hazard assessment of n-hexane exposure.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description BACKGROUND: Pyrrole adducts might be used as a biomarker for monitoring occupational exposure to n-hexane, but the Biological Exposure Indices of pyrrole adducts in serum and urine are still unknown. The current study was designed to investigate the biological exposure limit of pyrrole adducts for hazard assessment of n-hexane. METHODS: Male Wistar rats were given daily dose of 500, 1000, 1500, 2000, 4000 mg/kg bw n-hexane by gavage for 24 weeks. The levels of pyrrole adducts in serum and urine were determined at 8, 24 hours postdose once a week. The Biological Exposure Indices was evaluated by neurological evaluation and the levels of pyrrole adducts. The difference in pyrrole adducts formation between humans and rats were estimated by using in vitro test. RESULTS: Dose-dependent effects were observed between the doses of n-hexane and pyrrole adducts in serum and urine, and the levels of pyrrole adduct in serum and urine approached a plateau at week 4. There was a significantly negative correlation between the time to paralysis and the level of pyrrole adducts in serum and urine, while a positive correlation between gait score and levels of pyrrole adducts in serum and urine was observed. In vitro, pyrrole adducts formed in human serum was about two times more than those in rat serum at the same level of 2,5-HD. CONCLUSION: It was concluded that the BEIs of pyrrole adducts in humans were 23.1 ± 5.91 nmol/ml in serum 8 h postdose, 11.7 ± 2.64 nmol/ml in serum 24 h postdose, 253.8 ± 36.3 nmol/ml in urine 8 h postdose and 54.6 ± 15.42 nmol/ml in urine 24 h postdose.
url http://europepmc.org/articles/PMC3899213?pdf=render
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