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银纳米颗粒的硫化作用降低了其在斑马鱼中的毒性。

Sulfidation of silver nanoparticle reduces its toxicity in zebrafish.

作者信息

Devi G Prathinkra, Ahmed Khan Behlol Ayaz, Varsha M K N Sai, Shrijha B S, Lal K K Subin, Anbazhagan Veerappan, Thiagarajan R

机构信息

Department of Bioengineering, School of Chemical & Biotechnology, SASTRA University, Thanjavur 613401, India.

Department of Chemistry, School of Chemical & Biotechnology, SASTRA University, Thanjavur 613401, India.

出版信息

Aquat Toxicol. 2015 Jan;158:149-56. doi: 10.1016/j.aquatox.2014.11.007. Epub 2014 Nov 18.

Abstract

Chemical transformations of metal nanoparticles can be an important way to mitigate nanoparticle toxicity. Sulfidation of silver nanoparticle (AgNPs) is a natural process shown to occur in environment. Very few studies, employing microbes and embryonic stages of zebrafish, have shown reduction in AgNPs toxicity as a direct result of sulfidation. However the feasibility of reducing nanoparticle toxicity by sulfidation of AgNPs has never been studied in adult vertebrates. In this study, we have used adult zebrafish as a model to study the efficacy of sulfidation of AgNPs in reducing nanoparticle toxicity by employing a battery of biomarkers in liver and brain. While AgNPs enhanced liver oxidative stress, altered detoxification enzymes and affected brain acetylcholinesterase activity, sulfidation of AgNPs resulted in significant alleviation of changes in these parameters. Histopathological analyses of liver and sulphydryl levels also support the significance of sulfidated AgNPs in controlling the toxicity of AgNPs. Our study provides the first biochemical data on the importance of sulfidation of AgNPs in reducing biological toxicity in adult vertebrates.

摘要

金属纳米颗粒的化学转化可能是减轻纳米颗粒毒性的重要途径。银纳米颗粒(AgNPs)的硫化是一种在环境中会自然发生的过程。很少有研究利用微生物和斑马鱼胚胎阶段来表明硫化直接导致AgNPs毒性降低。然而,通过AgNPs硫化来降低纳米颗粒毒性的可行性从未在成年脊椎动物中进行过研究。在本研究中,我们以成年斑马鱼为模型,通过使用一系列肝脏和大脑中的生物标志物,来研究AgNPs硫化在降低纳米颗粒毒性方面的效果。虽然AgNPs增强了肝脏氧化应激、改变了解毒酶并影响了大脑乙酰胆碱酯酶活性,但AgNPs的硫化导致这些参数的变化得到显著缓解。肝脏的组织病理学分析和巯基水平也支持了硫化AgNPs在控制AgNPs毒性方面的重要性。我们的研究提供了关于AgNPs硫化在降低成年脊椎动物生物毒性方面重要性的首个生化数据。

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