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In Vivo toxicological assessment of biologically synthesized silver nanoparticles in adult Zebrafish (Danio rerio)

机译:成年斑马鱼(Danio rerio)中生物合成的银纳米颗粒的体内毒理学评估

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摘要

The present study examines the deleterious effect of biologically synthesized silver nanoparticles in adult zebrafish. Silver nanoparticles (AgNPs) used in the study were synthesized by treating AgNO3 with aqueous leaves extract of Malva crispa Linn., a medicinal herb as source of reductants. LC50 concentration of AgNPs at 96 h was observed as 142.2 μg/l. In order to explore the underlying toxicity mechanisms of AgNPs, half of the LC50 concentration (71.1 μg/l) was exposed to adult zebrafish for 14 days. Cytological changes and intrahepatic localization of AgNPs were observed in gills and liver tissues respectively, and the results concluded a possible sign for oxidative stress. In addition to oxidative stress the genotoxic effect was observed in peripheral blood cells like presence of micronuclei, nuclear abnormalities and also loss in cell contact with irregular shape was observed in liver parenchyma cells. Hence to confirm the oxidative stress and genotoxic effects the mRNA expression of stress related (MTF-1, HSP70) and immune response related (TLR4, NFKB, IL1B, CEBP, TRF, TLR22) genes were analyzed in liver tissues and the results clearly concluded that the plant extract mediated synthesis of AgNPs leads to oxidative stress and immunotoxicity in adult zebrafish.
机译:本研究探讨了生物合成的银纳米颗粒对成年斑马鱼的有害作用。该研究中使用的银纳米粒子(AgNPs)是通过用药用植物大叶​​锦葵(Malva crispa Linn。)的叶子提取物处理还原剂来合成AgNO3的。观察到96小时时AgNPs的LC50浓度为142.2μg/ l。为了探索AgNP的潜在毒性机制,将一半的LC50浓度(71.1μg/ l)暴露于成年斑马鱼14天。在NP和肝组织中分别观察到AgNPs的细胞学变化和肝内定位,结果得出氧化应激的可能信号。除氧化应激外,在外周血细胞中还观察到了遗传毒性作用,例如在肝实质细胞中观察到了微核的存在,核异常以及细胞与不规则形状接触的损失。因此,为证实氧化应激和遗传毒性作用,分析了肝组织中与应激相关的基因(MTF-1,HSP70)和与免疫应答相关的基因(TLR4,NFKB,IL1B,CEBP,TRF,TLR22)的mRNA表达,并清楚地得出了结论。植物提取物介导的AgNPs合成导致成年斑马鱼氧化应激和免疫毒性。

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