Literature DB >> 15878777

Toxicogenomic analysis of gene expression changes in rat liver after a 28-day oral benzene exposure.

Wilbert H M Heijne1, Diana Jonker, Rob H Stierum, Ben van Ommen, John P Groten.   

Abstract

Benzene is an industrial chemical, component of automobile exhaust and cigarette smoke. After hepatic bioactivation benzene induces bone marrow, blood and hepatic toxicity. Using a toxicogenomics approach this study analysed the effects of benzene at three dose levels on gene expression in the liver after 28 daily doses. NMR based metabolomics was used to assess benzene exposure by identification of characteristic benzene metabolite profiles in urine. The 28-day oral exposure to 200 and 800 mg/kg/day but not 10 mg/kg/day benzene-induced hematotoxicity in male Fisher rats. Additionally these upper dose levels slightly reduced body weight and increased relative liver weights. Changes in hepatic gene expression were identified with oligonucleotide microarrays at all dose levels including the 10 mg/kg/day dose level where no toxicity was detected by other methods. The benzene-induced gene expression changes were related to pathways of biotransformation, glutathione synthesis, fatty acid and cholesterol metabolism and others. Some of the effects on gene expression observed here have previously been observed after induction of acute hepatic necrosis with bromobenzene and acetaminophen. In conclusion, changes in hepatic gene expression were found after treatment with benzene both at the toxic and non-toxic doses. The results from this study show that toxicogenomics identified hepatic effects of benzene exposure possibly related to toxicity. The findings aid to interpret the relevance of hepatic gene expression changes in response to exposure to xenobiotics. In addition, the results have the potential to inform on the mechanisms of response to benzene exposure.

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Year:  2005        PMID: 15878777     DOI: 10.1016/j.mrfmmm.2005.02.003

Source DB:  PubMed          Journal:  Mutat Res        ISSN: 0027-5107            Impact factor:   2.433


  6 in total

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Authors:  Miguel Delgado; Francisco Garrido; Juliana Pérez-Miguelsanz; María Pacheco; Teresa Partearroyo; Dolores Pérez-Sala; María Angeles Pajares
Journal:  Antioxid Redox Signal       Date:  2014-01-03       Impact factor: 8.401

2.  Benzene-induced mouse hematotoxicity is regulated by a protein phosphatase 2A complex that stimulates transcription of cytochrome P4502E1.

Authors:  Liping Chen; Ping Guo; Haiyan Zhang; Wenxue Li; Chen Gao; Zhenlie Huang; Junling Fan; Yuling Zhang; Xue Li; Xiaoling Liu; Fangping Wang; Shan Wang; Qingye Li; Zhini He; Huiyao Li; Shen Chen; Xiaonen Wu; Lizhu Ye; Qiong Li; Huanwen Tang; Qing Wang; Guanghui Dong; Yongmei Xiao; Wen Chen; Daochuan Li
Journal:  J Biol Chem       Date:  2018-12-19       Impact factor: 5.157

3.  Changes in the peripheral blood transcriptome associated with occupational benzene exposure identified by cross-comparison on two microarray platforms.

Authors:  Cliona M McHale; Luoping Zhang; Qing Lan; Guilan Li; Alan E Hubbard; Matthew S Forrest; Roel Vermeulen; Jinsong Chen; Min Shen; Stephen M Rappaport; Songnian Yin; Martyn T Smith; Nathaniel Rothman
Journal:  Genomics       Date:  2009-01-20       Impact factor: 5.736

4.  Toxicity of Naphthalene and Benzene on Tribollium castaneum Herbst.

Authors:  Nerlis Pajaro-Castro; Karina Caballero-Gallardo; Jesus Olivero-Verbel
Journal:  Int J Environ Res Public Health       Date:  2017-06-21       Impact factor: 3.390

5.  Time Dependent Gene Expression Changes in the Liver of Mice Treated with Benzene.

Authors:  Han-Jin Park; Jung Hwa Oh; Seokjoo Yoon; S V S Rana
Journal:  Biomark Insights       Date:  2008-03-28

6.  Identification of in vitro and in vivo disconnects using transcriptomic data.

Authors:  Martin Otava; Ziv Shkedy; Willem Talloen; Geert R Verheyen; Adetayo Kasim
Journal:  BMC Genomics       Date:  2015-08-18       Impact factor: 3.969

  6 in total

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