您好,欢迎访问中国水产科学研究院 机构知识库!

The enantioselective toxicity and oxidative stress of beta-cypermethrin on zebrafish

文献类型: 外文期刊

作者: Mu, Xiyan 1 ; Shen, Gongming 1 ; Huang, Ying 1 ; Luo, Jianbo 1 ; Zhu, Lizhen 2 ; Qi, Suzhen 3 ; Li, Yingren 1 ; Wang, Che 1 ;

作者机构: 1.Chinese Acad Fishery Sci, Fishery Resource & Environm Res Ctr, Beijing, Peoples R China

2.China Agr Univ, Coll Sci, Beijing, Peoples R China

3.Chinese Acad Agr Sci, Inst Apicultural Res, Beijing, Peoples R China

关键词: Zebrafish;Beta-cypermethrin (beta-CYP);Enantioselective toxicity;Oxidative stress

期刊名称:ENVIRONMENTAL POLLUTION ( 影响因子:8.071; 五年影响因子:8.35 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Although the toxicity of beta-cypermethrin (beta-CYP) to aquatic organisms has become a significant concern in recent years, its enantioselective effects on non-target organisms is poorly understood. To investigate the enantioselective toxicity of beta-CYP on zebrafish, adult zebrafish were exposed to a series of isometric concentrations of four beta-CYP enantiomers and the beta-CYP racemate for 96 h. In addition, the activities of four antioxidant enzymes and the malondialdehyde (MDA) content in zebrafish liver and brain were tested after 15 and 30 days beta-CYP enantiomers and racemate exposure under environmentally relevant dosages (0.01 and 0.1 mu g/L). According to the acute toxicity results, the 1R-cis-alpha S and 1R-trans-alpha S enantiomers were more lethal than 1S-cis-alpha R and 1S-trans-alpha R. At 0.1 mu g/L, the 1R-cis-alpha S and 1R-trans-alpha S enantiomers, and the beta-CYP racemate could significantly induce a hepatic MDA content at 30 days post exposure (dpe), while only 1R-cis-alpha S caused brain lipid peroxidation. An apparent regulation of antioxidase levels was observed in zebrafish liver and brain after exposure to the 1R-cis-alpha S and 1R-trans-alpha S enantiomers, and the beta-CYP racemate. In contrast, no significant oxidative stress was observed in zebrafish exposed to 1S-cis-alpha R and 1S-trans-alpha R enantiomers under the test concentrations. This work demonstrated the occurrence of enantioselectivity in toxicity and oxidative stress of beta-CYP to adult zebrafish, which should be considered in environmental risk assessments. (C) 2017 Elsevier Ltd. All rights reserved.

  • 相关文献

[1]Oxidative Stress and Antioxidant Defenses in Juvenile Chinese Sturgeon (Acipenser Sinensis) after Prolonged Starvation. Guangpeng FENG,Ping ZHUANG,Xiaorong HUANG,Xiaotao SHI,Wengang YAN. 2011

[2]CS5931, a Novel Polypeptide in Ciona savignyi, Represses Angiogenesis via Inhibiting Vascular Endothelial Growth Factor (VEGF) and Matrix Metalloproteinases (MMPs). Liu, Ge,Wu, Ning,Liu, Ge,Liu, Ming,Wei, Jianteng,Huang, Haijuan,Zhang, Yuyan,Zhao, Jin,Xiao, Lin,Zheng, Lanhong,Lin, Xiukun. 2014

[3]Proteomic profile and toxicity pathway analysis in zebrafish embryos exposed to bisphenol A and di-n-butyl phthalate at environmentally relevant levels. Dong, Xing,Qiu, Xuchun,Xu, Hai,Wu, Xiangyang,Qiu, Xuchun,Meng, Shunlong,Yang, Ming. 2018

[4]Identification of a virulence-related surface protein XF in piscine Streptococcus agalactiae by pre-absorbed immunoproteomics. Liu, Guangjin,Zhang, Wei,Liu, Yongjie,Yao, Huochun,Lu, Chengping,Xu, Pao. 2014

[5]Cloning, characterization and expression analysis of interleukin-10 from the zebrarish (Danio rerion). Zhang, DC,Shao, YQ,Huang, YQ,Jiang, SG. 2005

[6]Generation of Tg(cyp1a:gfp) Transgenic Zebrafish for Development of a Convenient and Sensitive In Vivo Assay for Aryl Hydrocarbon Receptor Activity. Xu, Hongyan,Li, Caixia,Li, Yan,Ng, Grace Hwee Boon,Liu, Chunsheng,Zhang, Xiaoyan,Gong, Zhiyuan,Xu, Hongyan,Liu, Chunsheng.

[7]Dexamethasone-induced hepatomegaly and steatosis in larval zebrafish. Yin, Guojun,Kitazawa, Takio,Teraoka, Hiroki,Yin, Guojun,Cao, Liping,Du, Jinliang,Jia, Rui,Kubota, Akira.

[8]Effects of postprandial starvation on mRNA expression of endocrine-, amino acid and peptide transporter-, and metabolic enzyme-related genes in zebrafish (Danio rerio). Tian, Juan,He, Gen,Mai, Kangsen,Liu, Chengdong,Tian, Juan.

[9]Soybean saponin modulates nutrient sensing pathways and metabolism in zebrafish. Tian, Juan,Wang, Kaidi,Wang, Xuan,Zhou, Huihui,Liu, Chengdong,Mai, Kangsen,He, Gen,Tian, Juan,Wen, Hua,He, Gen. 2018

[10]Assessment of Sediment Quality of Yangtze River Estuary Using Zebrafish (Danio rerio) Embryos. Wu, Lingling,Chen, Ling,Zhang, Yalei,Zhao, Jianfu,Gao, Hongwen,Wu, Lingling,Hou, Junli.

[11]Bioinformatic Analyses of CCCH-Zinc Finger Family in Zebrafish (Danio rerio). Shui, Yan,Xu, Zeng-Hong,Zhou, Xin,Zhou, Xin. 2014

[12]Aroclor 1254 and BDE-47 inhibit dopaminergic function manifesting as changes in locomotion behaviors in zebrafish embryos. Tanaka, Yasuaki,Fujiwara, Mari,Shindo, Asako,Kitazawa, Takio,Teraoka, Hiroki,Shindo, Asako,Yin, Guojun. 2018

[13]Characterization and toxicology evaluation of chitosan nanoparticles on the embryonic development of zebrafish, Danio rerio. Wang, Yanbo,Zhou, Jinru,Liu, Lin,Fu, Linglin,Huang, Changjiang,Zhou, Deqing.

[14]Derivation of a pluripotent embryonic cell line from red sea bream blastulas. Chen, SL,Ye, HQ,Sha, ZX,Hong, Y.

[15]The developmental effect of difenoconazole on zebrafish embryos: A mechanism research. Mu, Xiyan,Chai, Tingting,Zhu, Lizhen,Li, Xuefeng,Wang, Chengju,Mu, Xiyan,Huang, Ying,Shen, Gongming,Li, Yingren,Wang, Kai.

[16]Molecular cloning and characterization of the Myf5 gene in sea perch (Lateolabrax japonicus). Ye, Han-Qing,Chen, Song-Lin,Xu, Jian-Yong.

[17]Development of a positive-negative selection procedure for gene targeting in fish cells. Chen, SL,Hong, YH,Schartl, M.

[18]Effect of 17 alpha-methyltestosterone (MT) on oxidation stress in the liver of juvenile GIFT tilapia, Oreochromis niloticus. Zheng, Yao,Qu, Jianhong,Qiu, Liping,Fan, Limin,Meng, Shunlong,Song, Chao,Bing, Xuwen,Chen, Jiazhang,Zheng, Yao,Qu, Jianhong,Qiu, Liping,Fan, Limin,Meng, Shunlong,Song, Chao,Bing, Xuwen,Chen, Jiazhang,Zheng, Yao,Bing, Xuwen,Chen, Jiazhang. 2016

[19]Toxic dinoflagellate Alexandrium tamarense induces oxidative stress and apoptosis in hepatopancreas of shrimp (Fenneropenaeus chinensis). Liang Zhongxiu,Ren Hai,Liang Zhongxiu,Li Jian,Li Jitao,Tan Zhijun,Zhao Fazhen. 2014

[20]HEPATIC SPECIFIC ANTIOXIDANT RESPONSES IN PELTEOBAGRUS FULVIDRACO FOLLOWING A SHORT-TERM EXPOSURE TO PHENANTHRENE. Chen, Ling,Wu, Ling-Ling,Hou, Jun-Li,Zhuang, Ping. 2011

作者其他论文 更多>>