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In vivo toxicity evaluation of biologically synthesized silver nanoparticles and gold nanoparticles on adult zebrafish: a comparative study

机译:生物合成的银纳米颗粒和金纳米颗粒对成年斑马鱼的体内毒性评估:一项比较研究

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摘要

In this study, toxicity of biologically synthesized silver nanoparticles (AgNPs) and gold nanoparticles (AuNPs) was compared using zebrafish as a model organism. At 96 h, LC50 of AgNPs and AuNPs was found to be 24.5 µg/L and 41 mg/L, respectively. Following the LC50 determination, half of the LC50 of AgNPs (12.25 µg/L) and AuNPs (20.5 mg/L) was exposed to adult zebrafishes for 14 days. Morphological changes, liver marker enzymes, reactive oxygen species (ROS) generation, genotoxic effects and mRNA expression levels of oxidative stress and innate immune response related genes were studied using nanoparticle treated gill, liver and blood cells. In this study, AgNP-treated gill and liver tissues showed a number of morphological changes such as cell membrane damage, irregular cell outlines, pyknotic nuclei and complete disruption of gill and liver cells; on the contrary, AuNPs treated liver tissues alone showed such changes. The levels of liver marker enzymes such as alanine aminotransferase and aspartate aminotransferase were increased after AgNPs treatment when compared to AuNPs treatment. AgNP-treated liver cells showed higher levels of ROS generation than the control; on the other hand, AuNPs treatment exhibited lower levels of ROS generation than the control. Interestingly, AgNP-treated blood cells showed micronuclei formation and nuclear abnormalities, while AuNPs treatment did not show such effects. Based on these observations, it is clear that AgNPs may cause oxidative stress and immunotoxicity to adult zebrafish than the AuNPs. However, these results clearly reveal the significance of relatively safe and less toxic bionanomaterials for possible biomedical applications.Electronic supplementary materialThe online version of this article (10.1007/s13205-018-1457-y) contains supplementary material, which is available to authorized users.
机译:在这项研究中,使用斑马鱼作为模型生物,比较了生物合成的银纳米颗粒(AgNPs)和金纳米颗粒(AuNPs)的毒性。在96小时时,发现AgNPs和AuNPs的LC50分别为24.5 µg / L和41 mg / L。 LC50测定后,将AgNPs(12.25 µg / L)和AuNPs(20.5 mg / L)的半数LC50暴露于成年斑马鱼14天。使用纳米颗粒处理的ill,肝和血细胞研究了形态变化,肝标志物酶,活性氧(ROS)产生,遗传毒性作用以及氧化应激和先天免疫应答相关基因的mRNA表达水平。在这项研究中,经AgNP处理的g和肝组织表现出许多形态学变化,例如细胞膜损伤,不规则的细胞轮廓,致死性核以及g和肝细胞的完全破坏。相反,仅用AuNPs处理的肝组织显示出这种变化。与AuNPs处理相比,AgNPs处理后肝标志物酶(如丙氨酸氨基转移酶和天冬氨酸氨基转移酶)的水平增加。经AgNP处理的肝细胞显示出比对照组更高的ROS生成水平。另一方面,AuNPs处理的ROS生成水平低于对照组。有趣的是,AgNP处理的血细胞显示出微核形成和核异常,而AuNPs处理则未显示出这种作用。根据这些观察结果,很明显,AgNPs可能比AuNPs对成年斑马鱼引起氧化应激和免疫毒性。但是,这些结果清楚地表明了相对安全且毒性较小的生物纳米材料对可能的生物医学应用的重要性。电子补充材料本文的在线版本(10.1007 / s13205-018-1457-y)包含补充材料,可供授权用户使用。

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