Evaluation of Noxious Effect of Environmental Contaminants Using Zebrafish Model

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Abstract

Effects of the inorganic chemicals Calcium Fluoride (CaF2) and Hexaflurosilicilic acid (H2SiF2) have been studied due to its excessive usage in drinking water plants, glass manufacturing etc. Toxicity studies on Zebrafish embryos have been carried out for CaF2 and H2SiF2 during the embryonic developmental stages to observe the changes taken place during the growth, development. These changes can be observed in cell differentiation, larval movements, delay in hatching, and by the changes in behavior. Due to the ease with the transparency of zebrafish embryos, it can be observed and manipulated. In the field of early developmental studies, these zebrafish embryos have been vital because they have faster development by which the whole organs get developed in 3 days. Thus it plays a significant role in the discovery and analysis of changes in the developmental aspects of their teratology study. Toxicity study in Adults Zebrafish can be studied through the histology analysis where the cell damage and cell death due to fluorides and acid ions which may also lead to morphological changes due to this environmental pollutant. This toxicity study can be studied based on behavioral effects, LC50 determination, and immunohistochemistry of the brain to observe the developmental neurotoxicity. This study describes the effect of the inorganic chemicals is leading to developmental toxicity, cell deformities, and cell death with the high mortality rate in the In vivo Zebrafish model.
环境污染物毒性效应的斑马鱼模型评价
无机化学品氟化钙(CaF2)和六氟硅酸(H2SiF2)在饮用水工厂、玻璃制造等领域的过量使用,对其影响进行了研究。在斑马鱼胚胎发育阶段对CaF2和H2SiF2进行了毒性研究,观察其在生长发育过程中的变化。这些变化可以在细胞分化、幼虫运动、孵化延迟和行为变化中观察到。由于斑马鱼胚胎的透明性,它可以被观察和操作。在早期发育研究领域,这些斑马鱼胚胎至关重要,因为它们的发育速度更快,整个器官在3天内发育完成。因此,它在发现和分析其畸形学研究的发育方面的变化方面起着重要的作用。对成年斑马鱼的毒性研究可以通过组织学分析来进行,其中氟化物和酸离子对细胞的损伤和死亡也可能导致斑马鱼的形态变化。本毒性研究可通过行为学效应、LC50测定和脑免疫组化观察发育性神经毒性。本研究描述了无机化学物质在体内斑马鱼模型中导致发育毒性、细胞畸形和高死亡率的细胞死亡的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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