期刊论文详细信息
PeerJ
Developmental toxicity from exposure to various forms of mercury compounds in medaka fish ( Oryzias latipes ) embryos
article
Wu Dong1  Jie Liu3  Lixin Wei4  Yang Jingfeng1  Melissa Chernick2  David E. Hinton2 
[1] Inner Mongolia Provincial Key Laboratory for Toxicants and Animal Disease, College of Animal Science and Technology, Inner Mongolia University for the Nationalities;Nicholas School of the Environment, Duke University;Zunyi Medical College, Department of Pharmacology;Department of Tibetan Medicine, Northwest Institute of Plateau Biology, Chinese Academy of Sciences
关键词: MeHg;    HgCl2;    α-HgS (Zhu Sha;    cinnabar);    β-HgS (Zuotai);    Medaka;    Developmental toxicity;    Heme oxygenase-1;    Mercury;    Metallothionein;   
DOI  :  10.7717/peerj.2282
学科分类:社会科学、人文和艺术(综合)
来源: Inra
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【 摘 要 】

This study examined developmental toxicity of different mercury compounds, including some used in traditional medicines. Medaka (Oryzias latipes) embryos were exposed to 0.001–10 µM concentrations of MeHg, HgCl2, α-HgS (Zhu Sha), and β-HgS (Zuotai) from stage 10 (6–7 hpf) to 10 days post fertilization (dpf). Of the forms of mercury in this study, the organic form (MeHg) proved the most toxic followed by inorganic mercury (HgCl2), both producing embryo developmental toxicity. Altered phenotypes included pericardial edema with elongated or tube heart, reduction of eye pigmentation, and failure of swim bladder inflation. Both α-HgS and β-HgS were less toxic than MeHg and HgCl2. Total RNA was extracted from survivors three days after exposure to MeHg (0.1 µM), HgCl2 (1 µM), α-HgS (10 µM), or β-HgS (10 µM) to examine toxicity-related gene expression. MeHg and HgCl2 markedly induced metallothionein (MT) and heme oxygenase-1 (Ho-1), while α-HgS and β-HgS failed to induce either gene. Chemical forms of mercury compounds proved to be a major determinant in their developmental toxicity.

【 授权许可】

CC BY   

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