Investigation of the molecular mechanisms of hepatic injury upon naphthalene exposure in zebrafish (Danio rerio)

被引:0
作者
Hongshan Chen
Lianxi Sheng
Zhiyuan Gong
Shaoguo Ru
Hongfeng Bian
机构
[1] Northeast Normal University,State Environmental Protection Key Laboratory of Wetland Ecology and Vegetation Restoration, School of Environment
[2] National University of Singapore,Department of Biological Sciences
[3] Ocean University of China,Marine Life Science College
来源
Ecotoxicology | 2018年 / 27卷
关键词
Naphthalene; Zebrafish; Microarray; Transgenic-Zebrafish; Histology;
D O I
暂无
中图分类号
学科分类号
摘要
Naphthalene has been used worldwide as a commercial insecticide for decades, which when detected in the environment can have various negative effects on non-target organism, such as hepatotoxicity. However, the molecular mechanisms of how naphthalene acts to affect the liver in zebrafish (Danio rerio) remains unknown. In this study, we evaluated the potential toxic effects of naphthalene on livers in female adult zebrafish over a 21-day subacute exposure. Global hepatic gene expression was examined by microarrays and the results indicated the regulated genes were associated significantly with vital hepatic injury pathways and GO categories upon naphthalene exposure, such as disruptions in lipid metabolism, inflammatory response, and the carcinogenic processes. According to our observations of liver histology, nuclear enlargement as a potential indicator of cancers and hepatic lipometabolic disorder precisely were supported. The 96 h acute naphthalene tests on Tg(lysC:DsRed) and LiPan lines larvae revealed recruitment of neutrophils by the liver, as well as decreased liver size, which further confirmed hepatic inflammation response to naphthalene exposure. Thus, these findings advance the field of ecotoxicology by unveiling a new role of naphthalene as a leading cause of liver damage and provide potential biomarker-genes for environmental naphthalene monitoring.
引用
收藏
页码:650 / 660
页数:10
相关论文
共 159 条
[1]  
Batterman S(2012)Sources, concentrations, and risks of naphthalene in indoor and outdoor air Indoor Air 22 266-278
[2]  
Beltran AL(2014)Clinicopathological characteristics and outcome of nested carcinoma of the urinary bladder Virchows Arch 465 199-205
[3]  
Beyer J(2013)Substance P- and choline acetyltransferase immunoreactivities in somatostatin-containing, human submucosal neurons. Histochem Cell Biol 140 157-139
[4]  
Jabari S(2016)Paracrine induction of HIF by glutamate in breast cancer: EglN1 senses cysteine Cell 166 126-303.
[5]  
Rau TT(1999)Stat3 as an Oncogene Cell 98 295-30
[6]  
Neuhuber W(1988)An estimation of the risk associated with the organic-constituents of hazardous and municipal waste landfill leachates Hazard Waste Hazard Mater 5 1-264
[7]  
Brehmer A(2005)Highthroughput assay for small molecules that modulate zebrafish embryonic heart rate Nat Chem Biol 1 263-72
[8]  
Briggs KJ(2014)Arsenic exposure alters expression of cell cycle and lipid metabolism genes in the liver of adult zebrafish (Danio rerio) Aquat Toxicol 153 66-807
[9]  
Bromberg JF(2014)Insights into the initiation of TCR signaling Nat Immunol 15 798-205
[10]  
Wrzeszczynska MH(2013)Hypoxia-inducible factor-dependent breast cancer-mesenchymal stem cell bidirectional signaling promotes metastasis J Clin Invest 123 189-107