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首页> 外文期刊>Applied Nanoscience >Toxicity assessment on haemotology, biochemical and histopathological alterations of silver nanoparticles-exposed freshwater fish Labeo rohita
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Toxicity assessment on haemotology, biochemical and histopathological alterations of silver nanoparticles-exposed freshwater fish Labeo rohita

机译:纳米银暴露的淡水鱼Labeo rohita的血液学,生化和组织病理学改变的毒性评估

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The increasing use of nano based-products induces the potential hazards from their manufacture, transportation, waste disposal and management processes. In this report, we emphasized the acute toxicity of silver nanoparticles (AgNPs) using freshwater fish Labeo rohita as an aquatic animal model. The AgNPs were synthesized using chemical reduction method and the formation of AgNPs was monitored by UV–Visible spectroscopy?analysis. The functional groups, crystaline nature and morphological characterizations were carried out by fourier transform infrared spectroscopy?(FTIR), X-ray diffraction (XRD) and high resolution?transmission electron microscopy (HRTEM) analysis. UV-Vis range was observed at 420?nm and XRD pattern showed that the particles are crystalline nature. HRTEM analysis revealed that the morphology of particles was spherical and size ranges between 50 and 100?nm. This investigation was extended to determine the potential acute toxicity, L. rohita was treated orally with the lethal concentration (LC50)?of AgNPs. The antioxidative responses were studied in the three major tissues such as gill, liver and muscle of L. rohita . The results of this investigation showed that increasing the concentration of AgNPs led to bioaccumulation of AgNPs in the major tissues. The haematological parameters showed significant alterations in the treated fish. The histological changes caused by chemically synthesized AgNPs demonstrated the damages in the tissues, primary lamella and blood vessels of L. rohita . The histological study also displayed the formation of vacuolation in liver and muscle when compared with untreated tissues (control)?of L. rohita .
机译:纳米基产品使用的增加引起了其制造,运输,废物处理和管理过程的潜在危害。在此报告中,我们强调了使用淡水鱼Labeo rohita作为水生动物模型的银纳米颗粒(AgNPs)的急性毒性。用化学还原法合成AgNPs,并通过紫外-可见光谱分析法监测AgNPs的形成。通过傅里叶变换红外光谱(FTIR),X射线衍射(XRD)和高分辨率透射电子显微镜(HRTEM)分析进行了官能团,结晶性质和形态表征。在420nm处观察到UV-Vis范围,XRD图谱表明该颗粒为结晶性。 HRTEM分析表明,颗粒形态为球形,尺寸范围在50至100?nm之间。这项研究扩展到确定潜在的急性毒性,用致死浓度(LC 50 )的AgNPs口服治疗L. rohita。在L. rohita的腮,肝脏和肌肉的三个主要组织中研究了抗氧化反应。这项研究的结果表明,增加AgNPs的浓度会导致主要组织中AgNPs的生物蓄积。血液学参数显示在处理过的鱼中有明显的变化。化学合成的AgNPs引起的组织学变化证明了L. rohita的组织,原板和血管受到损害。组织学研究还显示,与未经处理的罗氏乳杆菌(对照)组织相比,肝脏和肌肉中存在空泡形成。

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