首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Effects of Two Sublethal Concentrations of Mercury Chloride on the Morphology and Metallothionein Activity in the Liver of Zebrafish (Danio rerio)
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Effects of Two Sublethal Concentrations of Mercury Chloride on the Morphology and Metallothionein Activity in the Liver of Zebrafish (Danio rerio)

机译:两种亚致死浓度的氯化汞对斑马鱼肝脏形态和金属硫蛋白活性的影响

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摘要

Mercury (Hg) is a highly hazardous pollutant widely used in industrial, pharmaceutical and agricultural fields. Mercury is found in the environment in several forms, elemental, inorganic (iHg) and organic, all of which are toxic. Considering that the liver is the organ primarily involved in the regulation of metabolic pathways, homeostasis and detoxification we investigated the morphological and ultrastructural effects in Danio rerio liver after 96 h exposure to two low HgCl2 concentrations (7.7 and 38.5 μg/L). We showed that a short-term exposure to very low concentrations of iHg severely affects liver morphology and ultrastructure. The main effects recorded in this work were: cytoplasm vacuolization, decrease in both lipid droplets and glycogen granules, increase in number of mitochondria, increase of rough endoplasmic reticulum and pyknotic nuclei. Pathological alterations observed were dose dependent. Trough immunohistochemistry, in situ hybridization and real-time PCR analysis, the induction of metallothionein (MT) under stressor conditions was also evaluated. Some of observed alterations could be considered as a general response of tissue to heavy metals, whereas others (such as increased number of mitochondria and increase of RER) may be considered as an adaptive response to mercury.
机译:汞(Hg)是一种高度危险的污染物,广泛用于工业,制药和农业领域。在环境中发现的汞有几种形式,即元素,无机(iHg)和有机,均具有毒性。考虑到肝脏是主要参与代谢途径,体内稳态和排毒调节的器官,我们研究了两种低HgCl2浓度(7.7和38.5μg/ L)暴露96 h后对Danio rerio肝脏的形态和超微结构影响。我们表明,短期暴露于非常低浓度的iHg会严重影响肝脏的形态和超微结构。这项工作记录的主要影响是:细胞质空泡化,脂质滴和糖原颗粒的减少,线粒体数量的增加,粗糙的内质网和致密性核的增加。观察到的病理改变是剂量依赖性的。通过免疫组织化学,原位杂交和实时PCR分析,还评估了应激条件下金属硫蛋白(MT)的诱导。观察到的某些变化可被认为是组织对重金属的一般反应,而其他变化(例如线粒体数量增加和RER升高)则被认为是对汞的适应性反应。

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